Pith. sign in

REVIEW 4 major objections 4 minor 2 cited by

Photorefractive tuning seeded by third-harmonic light in a diamond photonic crystal cavity

T0 review · 4 major / 4 minor · reviewed 2026-08-06 · deepseek-v4-flash

Pith's one-line read Photorefractive tuning seeded by internally generated third-harmonic light blue-shifts a diamond nanocavity by 20.2(2) GHz — more than its linewidth — without degrading the Q-factor.

desk verdict A solid first observation of in-situ blue tuning in a diamond nanocavity, but the photorefractive mechanism and the seeding role of internal third-harmonic light are inferred rather than demonstrated. read the letter →

arxiv 2507.19583 v2 pith:NG7ZKSAA submitted 2025-07-25 physics.optics quant-ph

classification physics.opticsquant-ph
keywords photorefractiveeffectdiamondnanocavitythird-harmonicgenerationresonancetuningspace-chargefieldnitrogen-vacancycentersphotoniccrystalcavityelectro-optic
verification ladder T0 review T1 audit T2 compute T3 formal

The pith

A machine-rendered reading of the paper's core claim, the machinery that carries it, and where it could break.

The reading

The paper reports that a single-crystal diamond photonic-crystal cavity can be deterministically blue-tuned in place by shining telecom light through it. The tuning is seeded by third-harmonic green light generated inside the cavity, which photoionizes nitrogen-related defects; the resulting charge redistribution builds an electric field that changes the refractive index through an electric-field-induced second-order nonlinearity. The resonance moved by 20.2(2) GHz, more than the cavity linewidth, corresponding to a fractional index change of $-1.05(1)\times10^{-4}$, and relaxed back over tens of hours. If correct, this gives diamond a photonic tuning knob that does not degrade the cavity Q-factor and can be applied to individual devices on a chip.

What carries the argument

The space-charge field $E_{\mathrm{sp}}(t)$ built up by photoionization and charge diffusion, entering the cavity transmission through a coupled-mode detuning $\Delta_{\mathrm{PR}}(t) = C_f(1-e^{-\Gamma_f t}) + C_s(1-e^{-\Gamma_s t})$ and its relaxation analogue. The paper connects the blue shift to a refractive-index change via $\Delta\omega/\omega_0 \simeq -\Delta n/n_0$, and attributes the second-order response to $\chi^{(2)}_{\mathrm{eff}} = 3\chi^{(3)} E_{\mathrm{DC}}$, the same defect-field mechanism previously invoked for diamond second-harmonic generation.

What would settle it

Monitor the NV charge state while the blue shift develops: the photorefractive model requires photoionization and charge redistribution that tracks the resonance shift, so photoluminescence should show the NV$^-$ population decreasing as the shift grows, while a shift with no charge-state change would rule out the proposed mechanism. A second check is to drive the cavity with infrared light at powers below the third-harmonic threshold, since the model predicts no blue shift without green light.

Watch

Extended reading notes

Core claim

The authors claim to have observed the photorefractive effect in diamond, a material normally thought to lack the second-order nonlinearity required for it, and to have used it to tune a nanocavity. Prolonged high-power 1566 nm pumping generates cavity-enhanced third-harmonic light at about 522 nm; that green light photoionizes substitutional nitrogen and NV centres, and the liberated charges drift out of the high-intensity region, creating a space-charge field $E_{\mathrm{sp}}$. Because charged defects already supply a static field $E_{\mathrm{DC}}$, the bulk $\chi^{(3)}$ yields an effective $\chi^{(2)}_{\mathrm{eff}} = 3\chi^{(3)} E_{\mathrm{DC}}$, so $E_{\mathrm{sp}}$ shifts the index via an electro-optic effect. The result is a 20.2(2) GHz blue shift with no change in cavity linewidth or resonance contrast, modelled as a bi-exponential photorefractive detuning superimposed on a quasi-static thermo-optic red shift.

Load-bearing premise

The observed blue shift is caused by photorefraction, meaning green-light-driven space-charge fields modulating the refractive index electro-optically, rather than by some other laser-induced change such as persistent photoconductivity or surface charge trapping.

Editorial extensions

If this is right

  • Diamond nanocavities can be blue-tuned in situ by more than a linewidth without changing the Q-factor, enabling cavity-emitter and cavity-nonlinearity alignment on individual devices.
  • Internally generated visible light becomes a control channel, so engineering third-harmonic generation efficiency gives a handle on tuning speed and range.
  • The residual space-charge field after relaxation means the tuned state is a non-volatile photonic memory that can be partially rewritten by laser exposure.
  • The same effective $\chi^{(2)}$ opens a route to electro-optic modulation and frequency conversion in diamond, not just tuning.
  • Because green light is essential, switching the green source should gate the tuning rate, as demonstrated in the control experiment.

Reading between the lines

Editorial extensions of the paper, not claims the author makes directly.

  • If the space-charge mechanism holds, the effect should be suppressible in ultrapure diamond and enhanced in NV-rich diamond, giving a defect-engineering knob for tuning range.
  • The paper leaves open whether the index change is linear in $E_{\mathrm{sp}}$; an independent probe of the electro-optic response, such as an externally applied field, could separate the photorefractive contribution from other photo-induced index changes.
  • The two observed time scales suggest surface and bulk traps, so varying the nanobeam width or surface termination could test that assignment and potentially accelerate reset.
  • A testable extension is that the steady-state shift should scale with the 520 nm green power injected alongside the infrared light and should vanish when the green light is removed.
Share X Bluesky LinkedIn Reddit HN

Editorial analysis

A structured set of objections, weighed in public.

Desk editor's note, referee report, and a circularity audit.

Referee Report

4 major / 4 minor

Summary. The paper reports a diamond photonic crystal nanocavity that, when pumped with ~70 mW of CW telecom light, generates third-harmonic green light and simultaneously undergoes a gradual blue shift of its resonance frequency. The measured 20.2(2) GHz blue shift exceeds the cold-cavity linewidth, the cavity line shape and Q factor remain unchanged during the shift, and the shift partially relaxes over tens of hours when the pump power is reduced. The authors attribute this blue shift to a photorefractive effect: the internally generated third-harmonic light photoionizes nitrogen-related defects, producing a space-charge field that modifies the refractive index through an electric-field-induced effective χ(2). They support this hypothesis with an external green-laser control experiment and with a double-exponential phenomenological model for the shift and relaxation dynamics.

Significance. If fully substantiated, this would be a significant result: a nonvolatile, Q-preserving, in situ blue-tuning mechanism for diamond nanophotonic cavities, accompanied by the first demonstration of cavity-enhanced third-harmonic generation in a diamond nanocavity. The direct measurements are solid: the 20.2 GHz shift is larger than the cavity linewidth, the line shape and contrast are constant during tuning, the THG signal scales cubically with input power, and the external green-light control clearly shows that green light accelerates the shift. The main gap is that the photorefractive mechanism and the specific role of internal third-harmonic seeding are inferred rather than directly demonstrated; the paper itself labels the mechanism as a suggestion. The experimental observation of a controllable photo-induced blue shift would remain valuable even if the mechanism were later found to be different, but the title and abstract claim more than the evidence currently establishes.

major comments (4)
  1. [Sec. IV.A and IV.C; Supplemental Eq. (34)]
  2. [Sec. IV.B; Table II; Eq. (44)]
  3. [Sec. IV.B; Supplemental Secs. VII.A and IX]
  4. [Sec. IV.B; Supplemental Sec. X]
minor comments (4)
  1. [Eq. (2)]
  2. [Table III]
  3. [Sec. V.A]
  4. [Supplemental Sec. VII]

Circularity Check

0 steps flagged · score 0.0 of 10

No significant circularity: the 20.2 GHz blue shift is directly measured, and the photorefractive attribution is a labeled inference supported by external controls rather than a derivation from assumed inputs.

full rationale

The central quantitative result, Δω/2π = 20.2(2) GHz, is an experimental observation from repeated transmission scans, not an output of a fitted model. The dynamical model in the Supplemental Material (Eqs. 34, 44, and 47) is used to fit the observed time traces with biexponential forms; the parameters C_PR_f/s, Γ_f/s, etc. are explicitly extracted by fitting the same data, and the paper describes the resulting agreement as 'excellent concordance' rather than as an independent prediction. The photorefractive mechanism is explicitly hedged ('We suggest that the blue-shifting ... arises from the photorefractive effect'), and the green-light control in Fig. 5 directly manipulates the device with an external 520 nm laser, providing an independent experimental test of the importance of green light. The self-citation to the authors' prior PRL (Refs. 7/37) for χ2_eff = 3χ3 E_DC is a citation to an external peer-reviewed experimental result, and the paper also presents its own SHG detection (Supplemental Fig. 9) as independent evidence of nonzero χ2. The paper candidly states its limitations, including the inability to measure κ3,ex and therefore the inability to 'comment on the ionisation rates', and it labels the seeding by internally generated THG as speculation ('We speculate that the space-charge redistribution ... arises from ... absorption of the internally generated third-harmonic light'). These are acknowledged inference gaps rather than circular definitions or fitted inputs renamed as predictions. The central observation and its reproducibility stand independently of the mechanism model.

Assumptions & free parameters 8 free parameters · 5 assumptions · 0 invented entities

The quantitative claims (20.2 GHz shift, -1.05e-4 index change, THG cubic scaling) are directly measured. The interpretation as photorefraction rests on several imported or ad hoc assumptions: defect-driven chi2_eff, a single-exponential space-charge model extended post hoc to double exponential, an unmeasured THG cavity model, and material defect concentrations from the supplier. These assumptions are reasonable but not independently verified in this work.

free parameters (8)
  • Thermo-optic coefficient c_T = -4.53(7) kHz (Eq. 31/33); -2.9(2) kHz (Eq. 44)
    Fitted to the thermally distorted cavity line shape; takes two inconsistent values in different fits, indicating model drift.
  • THG overlap parameter L = 2.9(3) x 10^-44 s
    Lumped parameter containing kappa3,ex, kappa3, and beta_THG; fitted to THG spectra because kappa3 cannot be measured directly.
  • Photorefractive shift coefficients C_PR_f, C_PR_s = 8(1) GHz, 18.2(6) GHz
    Fit to the measured blue-shift versus time; not independently predicted.
  • Photorefractive rates Gamma_f, Gamma_s = 5(1) h^-1, 0.48(7) h^-1
    Fit to the same time series as C_PR; define the observed two time scales.
  • Relaxation coefficients C_R_f, C_R_s = 5.5(2) GHz, 4.1(1) GHz
    Fit to the relaxation curve; not independently predicted.
  • Relaxation rates gamma_f, gamma_s = 4.3(4) h^-1, 0.177(7) h^-1
    Fit to the relaxation curve; post-hoc double exponential.
  • End-to-end THG efficiency eta_THG = 6 x 10^-7 W^-2
    Slope of the linear fit of P_THG versus P_in^3; depends on fibre-link efficiency measured at 532 nm rather than 522 nm.
  • Assumed kappa3,ex for circulating THG power = critical coupling (lower) or kappa3,ex = kappa1,ex (upper)
    kappa3,ex is not measured; these assumptions span a factor ~170 in circulating green power (2.8 nW to 484 nW).
assumptions (5)
  • domain assumption Charged defects and surfaces break inversion symmetry, yielding a nonzero effective chi2_eff = 3 chi3 E_DC that enables the electro-optic effect in diamond.
    Invoked in Section IV A and Supp. VII; relies on the authors' prior PRL (Ref. 7) and silicon-waveguide literature.
  • ad hoc to paper The space-charge field follows a single-exponential relaxation model (Eq. 34), extended to a double exponential after observing two time scales in the data.
    Eqs. (34)-(38) in Supp. VIII; the double-exponential form is chosen post hoc and fitted.
  • domain assumption The third-harmonic field can be treated as a weak cavity with decay rates kappa3 and kappa3,ex even though the device supports no confined visible modes.
    Supp. V; kappa3 and kappa3,ex are not independently measured.
  • domain assumption The Element Six 'optical grade' diamond contains [Ns] ~ 1 ppm and [NV] ~ 0.01 ppm.
    Used in Section IV A to argue that Ns photoionization dominates charge redistribution; based on supplier data.
  • domain assumption The temperature rise of ~12 K does not cause thermal damage or graphitization.
    Section IV A; supported by arguments about thresholds but not directly verified after the run.

how reviews work

0 comments
Cite this review

Pith. "Pith review of Photorefractive tuning seeded by third-harmonic light in a diamond photonic crystal cavity." pith.science (2026). https://pith.science/paper/NG7ZKSAA

@misc{pith2026250719583,
  author       = {Pith},
  title        = {Pith review of: Photorefractive tuning seeded by third-harmonic light in a diamond photonic crystal cavity},
  year         = {2026},
  howpublished = {\url{https://pith.science/paper/NG7ZKSAA}},
  note         = {Machine review of arXiv:2507.19583}
}
abstract

Single-crystal diamond nanocavities have tremendous potential for use in quantum and nonlinear optical technologies. The ability to precisely control their resonant frequencies is essential for many applications, and $\textit{in situ}$ tuning is particularly desirable. In this work, we demonstrate deterministic resonance tuning of a diamond nanocavity. We observed a photorefractive effect in concert with the generation of third-harmonic light within the device. This effect blue-shifted the cavity resonance frequency by $20.2\,(2)\,\text{GHz}$, exceeding the cavity linewidth. The shift corresponded to a fractional change in refractive index of $-1.05\,(1)\times10^{-4}$, and its relaxation occurred over several tens of hours. Although photorefraction is a second-order nonlinear effect and has previously not been observed in diamond owing to its vanishing $\chi^{(2)}$, the observed behaviour is consistent with the generation of non-zero $\chi^{(2)}$ by electric fields from charged crystal defects. In addition to allowing tuning of diamond cavities for resonant nonlinear and quantum photonics applications, this observation could enable the realisation of diamond frequency converters and electro-optical modulators that rely on second-order nonlinearity.

Figures

Figures reproduced from arXiv: 2507.19583 by the authors.

Figure 1
Figure 1. FIG. 1 [PITH_FULL_IMAGE:figures/full_fig_p002_1.png] view at source ↗
Figure 2
Figure 2. FIG. 2. Cavity-enhanced third-harmonic generation from [PITH_FULL_IMAGE:figures/full_fig_p004_2.png] view at source ↗
Figure 3
Figure 3. FIG. 3. Simultaneous thermo-optic and photorefractive effects. [PITH_FULL_IMAGE:figures/full_fig_p006_3.png] view at source ↗
Figures from the paper (14 more)
Figure 4
Figure 4. Figure 4: FIG. 4 [PITH_FULL_IMAGE:figures/full_fig_p007_4.png]
Figure 5
Figure 5. Figure 5: FIG. 5. The significance of green light on blue-shifting of the [PITH_FULL_IMAGE:figures/full_fig_p009_5.png]
Figure 1
Figure 1. Figure 1: FIG. 1. Schematic of the experimental setup used in this work. Read [PITH_FULL_IMAGE:figures/full_fig_p017_1.png]
Figure 2
Figure 2. Figure 2: FIG. 2. The design of the photonic crystal cavity. [PITH_FULL_IMAGE:figures/full_fig_p017_2.png]
Figure 3
Figure 3. Figure 3: FIG. 3. The coupling between a fibre-taper waveguide mode and a [PITH_FULL_IMAGE:figures/full_fig_p020_3.png]
Figure 4
Figure 4. Figure 4: FIG. 4 [PITH_FULL_IMAGE:figures/full_fig_p020_4.png]
Figure 5
Figure 5. Figure 5: FIG. 5. In-plane electric field distribution of the third-harmonic gen [PITH_FULL_IMAGE:figures/full_fig_p021_5.png]
Figure 6
Figure 6. Figure 6: FIG. 6. The solid red line shows the estimated intracavity photon [PITH_FULL_IMAGE:figures/full_fig_p022_6.png]
Figure 8
Figure 8. Figure 8: FIG. 8. Large optical input powers result in mechanical self [PITH_FULL_IMAGE:figures/full_fig_p023_8.png]
Figure 7
Figure 7. Figure 7: FIG. 7. In blue, intensity of the THG signal plotted against the wave [PITH_FULL_IMAGE:figures/full_fig_p023_7.png]
Figure 9
Figure 9. Figure 9: FIG. 9. Second-harmonic generation from the diamond PCC, indi [PITH_FULL_IMAGE:figures/full_fig_p024_9.png]
Figure 10
Figure 10. Figure 10: FIG. 10. Relative position of the various defect levels within the [PITH_FULL_IMAGE:figures/full_fig_p025_10.png]
Figure 11
Figure 11. Figure 11: FIG. 11. Comparison of the cavity line shape between the first [PITH_FULL_IMAGE:figures/full_fig_p026_11.png]
Figure 13
Figure 13. Figure 13: FIG. 13. Demonstration of [PITH_FULL_IMAGE:figures/full_fig_p027_13.png]

Discussion (0). Continue with ORCID to comment.

Forward citations

Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Exceptional points in diamond optomechanics

    physics.optics 2026-05 unverdicted novelty 7.0 of 10

    Experimental demonstration of an exceptional point reached in a diamond optomechanical crystal, with asymmetric redistribution of optomechanical damping observed between hybridized modes.

  2. Saturable absorption in defect-rich diamond nanophotonics

    physics.optics 2026-03 conditional novelty 7.0 of 10

    Saturable absorption from crystal defects is observed and quantified in dense-NV diamond microdisk cavities, with a saturation intensity of about 3.3 MW/cm² at 1047 nm.

Reference graph

Works this paper leans on

182 extracted references · 104 canonical work pages · cited by 2 Pith papers

  1. [1]

    author author R. P. \ Mildren \ and\ author A. Sabella ,\ title title Highly efficient diamond Raman laser , \ https://doi.org/10.1364/OL.34.002811 journal journal Optics Letters \ volume 34 ,\ pages 2811 ( year 2009 ) NoStop

  2. [2]

    Dr \' e au , author A

    author author A. Dr \' e au , author A. Tcheborateva , author A. E. \ Mahdaoui , author C. Bonato ,\ and\ author R. Hanson ,\ title title Quantum Frequency Conversion of Single Photons from a Nitrogen-Vacancy Center in Diamond to Telecommunication Wavelengths , \ https://doi.org/10.1103/PhysRevApplied.9.064031 journal journal Physical Review Applied \ vol...

  3. [3]

    author author C. M. \ Knaut , author A. Suleymanzade , author Y.-C. \ Wei , author D. R. \ Assumpcao , author P.-J. \ Stas , author Y. Q. \ Huan , author B. Machielse , author E. N. \ Knall , author M. Sutula , author G. Baranes , author N. Sinclair , author C. De-Eknamkul , author D. S. \ Levonian , author M. K. \ Bhaskar , author H. Park , author M. Lon...

  4. [4]

    author author A. J. \ Stolk , author K. L. \ van der Enden , author M.-C. \ Slater , author I. te Raa-Derckx , author P. Botma , author J. van Rantwijk , author J. J. B. \ Biemond , author R. A. J. \ Hagen , author R. W. \ Herfst , author W. D. \ Koek , author A. J. H. \ Meskers , author R. Vollmer , author E. J. \ van Zwet , author M. Markham , author A....

  5. [5]

    author author B. J. M. \ Hausmann , author I. Bulu , author V. Venkataraman , author P. Deotare ,\ and\ author M. Lon c ar ,\ title title Diamond nonlinear photonics , \ https://doi.org/10.1038/nphoton.2014.72 journal journal Nature Photonics \ volume 8 ,\ pages 369--374 ( year 2014 ) NoStop

  6. [6]

    Latawiec , author V

    author author P. Latawiec , author V. Venkataraman , author A. Shams-Ansari , author M. Markham ,\ and\ author M. Loncar ,\ title title An integrated diamond Raman laser pumped in the near-visible , \ https://doi.org/10.1364/OL.43.000318 journal journal Optics Letters \ volume 43 ,\ pages 318--321 ( year 2018 ) NoStop

  7. [7]

    Fl gan , author J

    author author S. Fl gan , author J. Itoi , author P. K. \ Shandilya , author V. K. \ Kavatamane , author M. Mitchell , author D. P. \ Lake ,\ and\ author P. E. \ Barclay ,\ title title Optically Switching ^ (2) in Diamond Photonics , \ http://arxiv.org/abs/2412.06792 journal journal arXiv:2412.06792 \ ( year 2024 ) NoStop

  8. [8]

    author author D. P. \ Lake , author M. Mitchell , author H. Jayakumar , author L. F. \ dos Santos , author D. Curic ,\ and\ author P. E. \ Barclay ,\ title title Efficient telecom to visible wavelength conversion in doubly resonant gallium phosphide microdisks , \ https://doi.org/10.1063/1.4940242 journal journal Applied Physics Letters \ volume 108 ,\ pa...

Show all 182 references
  1. [9]

    author author A. D. \ Logan , author M. Gould , author E. R. \ Schmidgall , author K. Hestroffer , author Z. Lin , author W. Jin , author A. Majumdar , author F. Hatami , author A. W. \ Rodriguez ,\ and\ author K.-M. C. \ Fu ,\ title title 400\ 2018 ) NoStop

  2. [10]

    author author D. J. \ Wilson , author K. Schneider , author S. H \" o nl , author M. Anderson , author Y. Baumgartner , author L. Czornomaz , author T. J. \ Kippenberg ,\ and\ author P. Seidler ,\ title title Integrated gallium phosphide nonlinear photonics , \ https://doi.org...

  3. [11]

    Lu , author G

    author author X. Lu , author G. Moille , author A. Rao , author D. A. \ Westly ,\ and\ author K. Srinivasan ,\ title title Efficient photoinduced second-harmonic generation in silicon nitride photonics , \ https://doi.org/10.1038/s41566-020-00708-4 journal journal Nature Photo...

  4. [12]

    Clementi , author L

    author author M. Clementi , author L. Zatti , author J. Zhou , author M. Liscidini ,\ and\ author C.-s. \ Br \` e s ,\ title title Ultrabroadband milliwatt-level resonant frequency doubling on a chip , \ https://doi.org/10.1038/s41467-025-61468-9 journal journal Nature Communi...

  5. [13]

    \ Chen , author Z.-h

    author author J.-y. \ Chen , author Z.-h. \ Ma , author Y. M. \ Sua , author Z. Li , author C. Tang ,\ and\ author Y.-p. \ Huang ,\ title title Ultra-efficient frequency conversion in quasi-phase-matched lithium niobate microrings , \ https://doi.org/10.1364/OPTICA.6.001244 jo...

  6. [14]

    Sun , author H

    author author X. Sun , author H. Liang , author R. Luo , author W. C. \ Jiang , author X.-C. \ Zhang ,\ and\ author Q. Lin ,\ title title Nonlinear optical oscillation dynamics in high-Q lithium niobate microresonators , \ https://doi.org/10.1364/OE.25.013504 journal journal O...

  7. [15]

    Boes , author L

    author author A. Boes , author L. Chang , author C. Langrock , author M. Yu , author M. Zhang , author Q. Lin , author M. Lončar , author M. Fejer , author J. Bowers ,\ and\ author A. Mitchell ,\ title title Lithium niobate photonics: Unlocking the electromagnetic spectrum , \...

  8. [16]

    Aharonovich , author A

    author author I. Aharonovich , author A. D. \ Greentree ,\ and\ author S. Prawer ,\ title title Diamond photonics , \ https://doi.org/10.1038/nphoton.2011.54 journal journal Nature Photonics \ volume 5 ,\ pages 397--405 ( year 2011 ) NoStop

  9. [17]

    Schr \" o der , author S

    author author T. Schr \" o der , author S. L. \ Mouradian , author J. Zheng , author M. E. \ Trusheim , author M. Walsh , author E. H. \ Chen , author L. Li , author I. Bayn ,\ and\ author D. Englund ,\ title title Quantum nanophotonics in diamond [Invited] , \ https://doi.org...

  10. [18]

    Janitz , author M

    author author E. Janitz , author M. K. \ Bhaskar ,\ and\ author L. Childress ,\ title title Cavity quantum electrodynamics with color centers in diamond , \ https://doi.org/10.1364/optica.398628 journal journal Optica \ volume 7 ,\ pages 1232 ( year 2020 ) NoStop

  11. [19]

    author author P. K. \ Shandilya , author S. Fl gan , author N. C. \ Carvalho , author E. Zohari , author V. K. \ Kavatamane , author J. E. \ Losby ,\ and\ author P. E. \ Barclay ,\ title title Diamond Integrated Quantum Nanophotonics: Spins, Photons and Phonons , \ https://doi...

  12. [20]

    Maletinsky , author S

    author author P. Maletinsky , author S. Hong , author M. S. \ Grinolds , author B. Hausmann , author M. D. \ Lukin , author R. L. \ Walsworth , author M. Loncar ,\ and\ author A. Yacoby ,\ title title A robust scanning diamond sensor for nanoscale imaging with single nitrogen-...

  13. [21]

    author author M. J. \ Burek , author N. P. \ de Leon , author B. J. \ Shields , author B. J. M. \ Hausmann , author Y. Chu , author Q. Quan , author A. S. \ Zibrov , author H. Park , author M. D. \ Lukin ,\ and\ author M. Lon c ar ,\ title title Free-Standing Mechanical and Ph...

  14. [23]

    Hedrich , author D

    author author N. Hedrich , author D. Rohner , author M. Batzer , author P. Maletinsky ,\ and\ author B. J. \ Shields ,\ title title Parabolic Diamond Scanning Probes for Single-Spin Magnetic Field Imaging , \ https://doi.org/10.1103/PhysRevApplied.14.064007 journal journal Phy...

  15. [24]

    author author S. W. \ Ding , author M. Haas , author X. Guo , author K. Kuruma , author C. Jin , author Z. Li , author D. D. \ Awschalom , author N. Delegan , author F. J. \ Heremans , author A. A. \ High ,\ and\ author M. Loncar ,\ title title High-Q cavity interface for colo...

  16. [25]

    Jing , author F

    author author J. Jing , author F. Sun , author Z. Wang , author L. Ma , author Y. Luo , author Z. Du , author T. Zhang , author Y. Wang , author F. Xu , author T. Zhang , author C. Chen , author X. Ma , author Y. He , author Y. Zhu , author H. Sun , author X. Wang , author Y. ...

  17. [26]

    author author B. J. \ Hausmann , author I. B. \ Bulu , author P. B. \ Deotare , author M. McCutcheon , author V. Venkataraman , author M. L. \ Markham , author D. J. \ Twitchen ,\ and\ author M. Lon c ar ,\ title title Integrated high-quality factor optical resonators in diamo...

  18. [27]

    Abulikemu \ and\ author M

    author author A. Abulikemu \ and\ author M. Hase ,\ title title Highly-efficient third-harmonic generation from ultrapure diamond crystals , \ https://doi.org/10.1364/OME.485601 journal journal Opt. Mater. Express \ volume 13 ,\ pages 916--924 ( year 2023 ) NoStop

  19. [28]

    Zheng , author G

    author author J. Zheng , author G. Khalsa ,\ and\ author J. Moses ,\ title title Phonon-mediated third-harmonic generation in diamond , \ https://doi.org/10.1103/PhysRevApplied.22.014066 journal journal Physical Review Applied \ volume 22 ,\ pages 014066 ( year 2024 ) NoStop

  20. [29]

    author author S. C. \ Rand ,\ title title Ultraviolet four-wave mixing and phase conjugation with metastable color-center states in diamond , \ https://doi.org/10.1364/OL.13.000140 journal journal Optics Letters \ volume 13 ,\ pages 140 ( year 1988 ) NoStop

  21. [30]

    author author J. M. P. \ Almeida , author C. Oncebay , author J. P. \ Siqueira , author S. R. \ Muniz , author L. De Boni ,\ and\ author C. R. \ Mendon c a ,\ title title Nonlinear optical spectrum of diamond at femtosecond regime , \ https://doi.org/10.1038/s41598-017-14748-4...

  22. [31]

    Shalaby , author C

    author author M. Shalaby , author C. Vicario ,\ and\ author C. P. \ Hauri ,\ title title Extreme nonlinear terahertz electro-optics in diamond for ultrafast pulse switching , \ https://doi.org/10.1063/1.4978051 journal journal APL Photonics \ volume 2 ,\ pages 036106 ( year 20...

  23. [32]

    Motojima , author T

    author author M. Motojima , author T. Suzuki , author H. Shigekawa , author Y. Kainuma , author T. An ,\ and\ author M. Hase ,\ title title Giant nonlinear optical effects induced by nitrogen-vacancy centers in diamond crystals , \ https://doi.org/10.1364/OE.27.032217 journal ...

  24. [33]

    Behjat , author P

    author author P. Behjat , author P. Parsa , author N. C. \ Carvalho , author P. K. \ Shandilya ,\ and\ author P. E. \ Barclay ,\ title title Kerr–Optomechanical Spectroscopy of Multimode Diamond Resonators , \ https://doi.org/10.1021/acsphotonics.3c00896 journal journal ACS Ph...

  25. [34]

    Talik , author M

    author author W. Talik , author M. Mr \' o zek , author A. M. \ Wojciechowski ,\ and\ author K. Dzier \. z e ga ,\ title title Impact of nitrogen-vacancy color centers on the optical Kerr effect in diamond: a femtosecond Z-scan study , \ https://doi.org/10.1364/OE.553603 journ...

  26. [35]

    author author K. C. \ Lee , author M. R. \ Sprague , author B. J. \ Sussman , author J. Nunn , author N. K. \ Langford , author X.-M. \ Jin , author T. Champion , author P. Michelberger , author K. F. \ Reim , author D. England , author D. Jaksch ,\ and\ author I. A. \ Walmsle...

  27. [36]

    Latawiec , author V

    author author P. Latawiec , author V. Venkataraman , author M. J. \ Burek , author B. J. M. \ Hausmann , author I. Bulu ,\ and\ author M. Lon c ar ,\ title title On-chip diamond Raman laser , \ https://doi.org/10.1364/OPTICA.2.000924 journal journal Optica \ volume 2 ,\ pages ...

  28. [37]

    author author M. D. \ Anderson , author S. Tarrago Velez , author K. Seibold , author H. Flayac , author V. Savona , author N. Sangouard ,\ and\ author C. Galland ,\ title title Two-Color Pump-Probe Measurement of Photonic Quantum Correlations Mediated by a Single Phonon , \ h...

  29. [38]

    Riedel , author S

    author author D. Riedel , author S. Fl gan , author P. Maletinsky ,\ and\ author R. J. \ Warburton ,\ title title Cavity-Enhanced Raman Scattering for In Situ Alignment and Characterization of Solid-State Microcavities , \ https://doi.org/10.1103/PhysRevApplied.13.014036 journ...

  30. [39]

    Fl gan , author P

    author author S. Fl gan , author P. Maletinsky , author R. J. \ Warburton ,\ and\ author D. Riedel ,\ title title Microcavity platform for widely tunable optical double resonance , \ https://doi.org/10.1364/OPTICA.466003 journal journal Optica \ volume 9 ,\ pages 1197 ( year 2...

  31. [40]

    author author A. M. \ Zaitsev ,\ @noop title Optical Properties of Diamond \ ( publisher Springer ,\ year 2010 ) NoStop

  32. [41]

    u ller , author V. Waselowski , author J. N. \ Becker , author B. Pingault , author H. Sternschulte , author D. Steinm \

    author author C. Hepp , author T. M \" u ller , author V. Waselowski , author J. N. \ Becker , author B. Pingault , author H. Sternschulte , author D. Steinm \" u ller-Nethl , author A. Gali , author J. R. \ Maze , author M. Atat \" u re ,\ and\ author C. Becher ,\ title title...

  33. [42]

    Iwasaki , author Y

    author author T. Iwasaki , author Y. Miyamoto , author T. Taniguchi , author P. Siyushev , author M. H. \ Metsch , author F. Jelezko ,\ and\ author M. Hatano ,\ title title Tin-Vacancy Quantum Emitters in Diamond , \ https://doi.org/10.1103/PhysRevLett.119.253601 journal journ...

  34. [43]

    author author B. C. \ Rose , author D. Huang , author Z.-H. \ Zhang , author P. Stevenson , author A. M. \ Tyryshkin , author S. Sangtawesin , author S. Srinivasan , author L. Loudin , author M. L. \ Markham , author A. M. \ Edmonds , author D. J. \ Twitchen , author S. A. \ L...

  35. [44]

    author author M. E. \ Trusheim , author N. H. \ Wan , author K. C. \ Chen , author C. J. \ Ciccarino , author J. Flick , author R. Sundararaman , author G. Malladi , author E. Bersin , author M. Walsh , author B. Lienhard , author H. Bakhru , author P. Narang ,\ and\ author D....

  36. [45]

    Mukherjee , author Z.-H

    author author S. Mukherjee , author Z.-H. \ Zhang , author D. G. \ Oblinsky , author M. O. \ de Vries , author B. C. \ Johnson , author B. C. \ Gibson , author E. L. H. \ Mayes , author A. M. \ Edmonds , author N. Palmer , author M. L. \ Markham , author \' A . Gali , author G...

  37. [46]

    Corte , author G

    author author E. Corte , author G. Andrini , author E. Nieto Hern \' a ndez , author V. Pugliese , author \^ A . Costa , author G. Magchiels , author J. Moens , author S. M. \ Tunhuma , author R. Villarreal , author L. M. C. \ Pereira , author A. Vantomme , author J. G. \ Corr...

  38. [47]

    Wang , author L

    author author P. Wang , author L. Kazak , author K. Senkalla , author P. Siyushev , author R. Abe , author T. Taniguchi , author S. Onoda , author H. Kato , author T. Makino , author M. Hatano , author F. Jelezko ,\ and\ author T. Iwasaki ,\ title title Transform-Limited Photo...

  39. [48]

    author author I. M. \ Morris , author T. L \" u hmann , author K. Klink , author L. Crooks , author D. Hardeman , author D. J. \ Twitchen , author S. Pezzagna , author J. Meijer , author S. S. \ Nicley ,\ and\ author J. N. \ Becker ,\ title title Lifetime-Limited and Tunable E...

  40. [49]

    author author M. N. \ Ashfold , author J. P. \ Goss , author B. L. \ Green , author P. W. \ May , author M. E. \ Newton ,\ and\ author C. V. \ Peaker ,\ title title Nitrogen in Diamond , \ https://doi.org/10.1021/acs.chemrev.9b00518 journal journal Chemical Reviews \ volume 12...

  41. [50]

    Cox , author M

    author author A. Cox , author M. E. \ Newton ,\ and\ author J. M. \ Baker ,\ title title ^ 13 C , ^ 14 N and ^ 15 N ENDOR measurements on the single substitutional nitrogen centre ( P1 ) in diamond , \ https://doi.org/10.1088/0953-8984/6/2/025 journal journal Journal of Physic...

  42. [51]

    author author A. M. \ Ferrari , author S. Salustro , author F. S. \ Gentile , author W. C. \ Mackrodt ,\ and\ author R. Dovesi ,\ title title Substitutional nitrogen atom in diamond. A quantum mechanical investigation of the electronic and spectroscopic properties , \ https://...

  43. [52]

    author author M. W. \ Doherty , author N. B. \ Manson , author P. Delaney , author F. Jelezko , author J. Wrachtrup ,\ and\ author L. C. \ Hollenberg ,\ title title The nitrogen-vacancy colour centre in diamond , \ https://doi.org/10.1016/j.physrep.2013.02.001 journal journal ...

  44. [53]

    author author J. R. \ Maze , author A. Gali , author E. Togan , author Y. Chu , author A. Trifonov , author E. Kaxiras ,\ and\ author M. D. \ Lukin ,\ title title Properties of nitrogen-vacancy centers in diamond: the group theoretic approach , \ https://doi.org/10.1088/1367-2...

  45. [54]

    Aslam , author G

    author author N. Aslam , author G. Waldherr , author P. Neumann , author F. Jelezko ,\ and\ author J. Wrachtrup ,\ title title Photo-induced ionization dynamics of the nitrogen vacancy defect in diamond investigated by single-shot charge state detection , \ https://doi.org/10....

  46. [55]

    Chu , author M

    author author Y. Chu , author M. Markham , author D. J. \ Twitchen ,\ and\ author M. D. \ Lukin ,\ title title All-optical control of a single electron spin in diamond , \ https://doi.org/10.1103/PhysRevA.91.021801 journal journal Physical Review A \ volume 91 ,\ pages 021801 ...

  47. [56]

    Baier , author C

    author author S. Baier , author C. E. \ Bradley , author T. Middelburg , author V. V. \ Dobrovitski , author T. H. \ Taminiau ,\ and\ author R. Hanson ,\ title title Orbital and Spin Dynamics of Single Neutrally-Charged Nitrogen-Vacancy Centers in Diamond , \ https://doi.org/1...

  48. [57]

    author author M. J. \ Degen , author S. J. H. \ Loenen , author H. P. \ Bartling , author C. E. \ Bradley , author A. L. \ Meinsma , author M. Markham , author D. J. \ Twitchen ,\ and\ author T. H. \ Taminiau ,\ title title Entanglement of dark electron-nuclear spin defects in...

  49. [58]

    Razinkovas , author M

    author author L. Razinkovas , author M. Maciaszek , author F. Reinhard , author M. W. \ Doherty ,\ and\ author A. Alkauskas ,\ title title Photoionization of negatively charged NV centers in diamond: Theory and ab initio calculations , \ https://doi.org/10.1103/PhysRevB.104.23...

  50. [59]

    author author S. M. \ Blakley , author T. T. \ Mai , author S. J. \ Moxim , author J. T. \ Ryan , author A. J. \ Biacchi , author A. R. H. \ Walker ,\ and\ author R. D. \ McMichael ,\ title title Spectroscopy of photoionization from the ^1E singlet state in nitrogen-vacancy ce...

  51. [60]

    Yurgens , author J

    author author V. Yurgens , author J. A. \ Zuber , author S. Fl gan , author M. De Luca , author B. J. \ Shields , author I. Zardo , author P. Maletinsky , author R. J. \ Warburton ,\ and\ author T. Jakubczyk ,\ title title Low-Charge-Noise Nitrogen-Vacancy Centers in Diamond C...

  52. [61]

    author author R. M. \ Goldblatt , author N. Dontschuk , author D. J. \ McCloskey , author A. M. \ Martin ,\ and\ author A. A. \ Wood ,\ title title Quantum electrometry of non-volatile space charges in diamond , \ http://arxiv.org/abs/2410.19309 journal journal arXiv:2410.1930...

  53. [62]

    Ashkin , author G

    author author A. Ashkin , author G. D. \ Boyd , author J. M. \ Dziedzic , author R. G. \ Smith , author A. A. \ Ballman , author J. J. \ Levinstein ,\ and\ author K. Nassau ,\ title title Optically‐induced refractive index inhomogeneities in LiNbO _3 AND LiTaO _3 , \ https://d...

  54. [63]

    author author A. M. \ Glass , author D. von der Linde ,\ and\ author T. J. \ Negran ,\ title title High-voltage bulk photovoltaic effect and the photorefractive process in LiNbO _3 , \ https://doi.org/10.1063/1.1655453 journal journal Applied Physics Letters \ volume 25 ,\ pag...

  55. [64]

    author author A. A. \ Savchenkov , author A. B. \ Matsko , author D. Strekalov , author V. S. \ Ilchenko ,\ and\ author L. Maleki ,\ title title Enhancement of photorefraction in whispering gallery mode resonators , \ https://doi.org/10.1103/PhysRevB.74.245119 journal journal ...

  56. [65]

    Leidinger , author C

    author author M. Leidinger , author C. S. \ Werner , author W. Yoshiki , author K. Buse ,\ and\ author I. Breunig ,\ title title Impact of the photorefractive and pyroelectric-electro-optic effect in lithium niobate on whispering-gallery modes , \ https://doi.org/10.1364/OL.41...

  57. [66]

    Liang , author R

    author author H. Liang , author R. Luo , author Y. He , author H. Jiang ,\ and\ author Q. Lin ,\ title title High-quality lithium niobate photonic crystal nanocavities , \ https://doi.org/10.1364/OPTICA.4.001251 journal journal Optica \ volume 4 ,\ pages 1251 ( year 2017 ) NoStop

  58. [67]

    Jiang , author R

    author author H. Jiang , author R. Luo , author H. Liang , author X. Chen , author Y. Chen ,\ and\ author Q. Lin ,\ title title Fast response of photorefraction in lithium niobate microresonators , \ https://doi.org/10.1364/ol.42.003267 journal journal Optics Letters \ volume ...

  59. [68]

    Li , author H

    author author M. Li , author H. Liang , author R. Luo , author Y. He , author J. Ling ,\ and\ author Q. Lin ,\ title title Photon-level tuning of photonic nanocavities , \ https://doi.org/10.1364/OPTICA.6.000860 journal journal Optica \ volume 6 ,\ pages 860 ( year 2019 ) NoStop

  60. [69]

    Kong , author F

    author author Y. Kong , author F. Bo , author W. Wang , author D. Zheng , author H. Liu , author G. Zhang , author R. Rupp ,\ and\ author J. Xu ,\ title title Recent progress in lithium niobate: Optical damage, defect simulation, and on-chip devices , \ https://doi.org/https:/...

  61. [70]

    Zhu , author L

    author author D. Zhu , author L. Shao , author M. Yu , author R. Cheng , author B. Desiatov , author C. J. \ Xin , author Y. Hu , author J. Holzgrafe , author S. Ghosh , author A. Shams-Ansari , author E. Puma , author N. Sinclair , author C. Reimer , author M. Zhang ,\ and\ a...

  62. [71]

    Liu , author T

    author author J. Liu , author T. Stace , author J. Dai , author K. Xu , author A. Luiten ,\ and\ author F. Baynes ,\ title title Resonant Stimulated Photorefractive Scattering , \ https://doi.org/10.1103/PhysRevLett.127.033902 journal journal Physical Review Letters \ volume 1...

  63. [72]

    Xu , author M

    author author Y. Xu , author M. Shen , author J. Lu , author J. B. \ Surya , author A. A. \ Sayem ,\ and\ author H. X. \ Tang ,\ title title Mitigating photorefractive effect in thin-film lithium niobate microring resonators , \ https://doi.org/10.1364/OE.418877 journal journa...

  64. [73]

    Hou , author J

    author author J. Hou , author J. Zhu , author R. Ma , author B. Xue , author Y. Zhu , author J. Lin , author X. Jiang , author X. Chen , author Y. Cheng , author L. Ge , author Y. Zheng ,\ and\ author W. Wan ,\ title title Subwavelength Photorefractive Grating in a Thin‐Film L...

  65. [74]

    Ren , author C.-h

    author author X. Ren , author C.-h. \ Lee , author K. Xue , author S. Ou , author Y. Yu , author Z. Chen ,\ and\ author M. Yu ,\ title title Photorefractive and pyroelectric photonic memory and long-term stability in thin-film lithium niobate microresonators , \ https://doi.or...

  66. [75]

    G \"u nter , author J.-P

    author author P. G \"u nter , author J.-P. \ Huignard ,\ and\ author A. M. \ Glass ,\ @noop title Photorefractive materials and their applications ,\ Vol. volume 1 \ ( publisher Springer ,\ year 1988 ) NoStop

  67. [76]

    author author R. W. \ Boyd ,\ @noop title Nonlinear optics \ ( publisher Academic Press ,\ year 2008 ) NoStop

  68. [78]

    Carmon \ and\ author K

    author author T. Carmon \ and\ author K. J. \ Vahala ,\ title title Visible continuous emission from a silica microphotonic device by third-harmonic generation , \ https://doi.org/10.1038/nphys601 journal journal Nature Physics \ volume 3 ,\ pages 430--435 ( year 2007 ) NoStop

  69. [79]

    author author M. K. \ Bhaskar , author R. Riedinger , author B. Machielse , author D. S. \ Levonian , author C. T. \ Nguyen , author E. N. \ Knall , author H. Park , author D. Englund , author M. Lon c ar , author D. D. \ Sukachev ,\ and\ author M. D. \ Lukin ,\ title title Ex...

  70. [80]

    Mitchell , author D

    author author M. Mitchell , author D. P. \ Lake ,\ and\ author P. E. \ Barclay ,\ title title Realizing Q>300\,000 in diamond microdisks for optomechanics via etch optimization , \ https://doi.org/10.1063/1.5053122 journal journal APL Photonics \ volume 4 ,\ pages 016101 ( yea...

  71. [81]

    Masuda , author J

    author author T. Masuda , author J. P. E. \ Hadden , author D. P. \ Lake , author M. Mitchell , author S. Fl gan ,\ and\ author P. E. \ Barclay ,\ title title Fiber-taper collected emission from NV centers in high- Q/V diamond microdisks , \ https://doi.org/10.1364/OE.507325 j...

  72. [82]

    Aspelmeyer , author T

    author author M. Aspelmeyer , author T. J. \ Kippenberg ,\ and\ author F. Marquardt ,\ title title Cavity optomechanics , \ https://doi.org/10.1103/RevModPhys.86.1391 journal journal Reviews of Modern Physics \ volume 86 ,\ pages 1391--1452 ( year 2014 ) NoStop

  73. [83]

    author author P. E. \ Barclay , author K. Srinivasan ,\ and\ author O. Painter ,\ title title Nonlinear response of silicon photonic crystal micresonators excited via an integrated waveguide and fiber taper , \ https://doi.org/10.1364/OPEX.13.000801 journal journal Optics Expr...

  74. [84]

    Schmidt , author A

    author author C. Schmidt , author A. Chipouline , author T. Pertsch , author A. T \" u nnermann , author O. Egorov , author F. Lederer ,\ and\ author L. Deych ,\ title title Nonlinear thermal effects in optical microspheres at different wavelength sweeping speeds , \ https://d...

  75. [85]

    Carmon , author L

    author author T. Carmon , author L. Yang ,\ and\ author K. J. \ Vahala ,\ title title Dynamical thermal behavior and thermal self-stability of microcavities , \ https://doi.org/10.1364/OPEX.12.004742 journal journal Optics Express \ volume 12 ,\ pages 4742 ( year 2004 ) NoStop

  76. [86]

    Gupta , author K

    author author S. Gupta , author K. L. \ Moore , author K. W. \ Murch ,\ and\ author D. M. \ Stamper-Kurn ,\ title title Cavity Nonlinear Optics at Low Photon Numbers from Collective Atomic Motion , \ https://doi.org/10.1103/PhysRevLett.99.213601 journal journal Physical Review...

  77. [87]

    Shankar , author I

    author author R. Shankar , author I. Bulu , author R. Leijssen ,\ and\ author M. Lon c ar ,\ title title Study of thermally-induced optical bistability and the role of surface treatments in Si-based mid-infrared photonic crystal cavities , \ https://doi.org/10.1364/OE.19.02482...

  78. [88]

    Hu , author S

    author author Y. Hu , author S. Ding , author Y. Qin , author J. Gu , author W. Wan , author M. Xiao ,\ and\ author X. Jiang ,\ title title Generation of Optical Frequency Comb via Giant Optomechanical Oscillation , \ https://doi.org/10.1103/PhysRevLett.127.134301 journal jour...

  79. [89]

    Galli , author D

    author author M. Galli , author D. Gerace , author K. Welna , author T. F. \ Krauss , author L. O'Faolain , author G. Guizzetti ,\ and\ author L. C. \ Andreani ,\ title title Low-power continuous-wave generation of visible harmonics in silicon photonic crystal nanocavities , \...

  80. [90]

    McLaughlin , author D

    author author B. McLaughlin , author D. P. \ Lake , author M. Mitchell ,\ and\ author P. E. \ Barclay ,\ title title Nonlinear optics in gallium phosphide cavities: simultaneous second and third harmonic generation , \ https://doi.org/10.1364/JOSAB.455234 journal journal Journ...

  81. [91]

    author author P. K. \ Shandilya , author D. P. \ Lake , author M. J. \ Mitchell , author D. D. \ Sukachev ,\ and\ author P. E. \ Barclay ,\ title title Optomechanical interface between telecom photons and spin quantum memory , \ https://doi.org/10.1038/s41567-021-01364-3 journ...

  82. [92]

    author author A. G. \ Krause , author J. T. \ Hill , author M. Ludwig , author A. H. \ Safavi-Naeini , author J. Chan , author F. Marquardt ,\ and\ author O. Painter ,\ title title Nonlinear Radiation Pressure Dynamics in an Optomechanical Crystal , \ https://doi.org/10.1103/P...

  83. [93]

    Wang , author Y

    author author B. Wang , author Y. Ji , author L. Gu , author L. Fang , author X. Gan ,\ and\ author J. Zhao ,\ title title High-Efficiency Second-Harmonic and Sum-Frequency Generation in a Silicon Nitride Microring Integrated with Few-Layer GaSe , \ https://doi.org/10.1021/acs...

  84. [94]

    Peithmann , author A

    author author K. Peithmann , author A. Wiebrock ,\ and\ author K. Buse ,\ title title Photorefractive properties of highly-doped lithium niobate crystals in the visible and near-infrared , \ https://doi.org/10.1007/s003400050704 journal journal Applied Physics B: Lasers and Op...

  85. [95]

    a umer , author H. Hesse , author E. Kr \

    author author F. Holtmann , author J. Imbrock , author C. B \" a umer , author H. Hesse , author E. Kr \" a tzig ,\ and\ author D. Kip ,\ title title Photorefractive properties of undoped lithium tantalate crystals for various composition , \ https://doi.org/10.1063/1.1805189 ...

  86. [96]

    Liu , author K

    author author Y. Liu , author K. Kitamura , author S. Takekawa , author M. Nakamura , author Y. Furukawa ,\ and\ author H. Hatano ,\ title title Two-color photorefractive properties in near-stoichiometric lithium tantalate crystals , \ https://doi.org/10.1063/1.1737046 journal...

  87. [97]

    author author J. E. \ Ortmann , author F. Eltes , author D. Caimi , author N. Meier , author A. A. \ Demkov , author L. Czornomaz , author J. Fompeyrine ,\ and\ author S. Abel ,\ title title Ultra-Low-Power Tuning in Hybrid Barium Titanate–Silicon Nitride Electro-optic Devices...

  88. [98]

    Karvounis , author V

    author author A. Karvounis , author V. V. \ Vogler-Neuling , author F. U. \ Richter , author E. Dénervaud , author M. Timofeeva ,\ and\ author R. Grange ,\ title title Electro-optic metasurfaces based on barium titanate nanoparticle films , \ https://doi.org/https://doi.org/10...

  89. [100]

    Troj \' a nek , author K

    author author F. Troj \' a nek , author K. Z \' i dek , author B. Dzurň \' a k , author M. Koz \' a k ,\ and\ author P. Mal \' y ,\ title title Nonlinear optical properties of nanocrystalline diamond , \ https://doi.org/10.1364/OE.18.001349 journal journal Optics Express \ vol...

  90. [101]

    author author J. S. \ Levy , author M. A. \ Foster , author A. L. \ Gaeta ,\ and\ author M. Lipson ,\ title title Harmonic generation in silicon nitride ring resonators , \ https://doi.org/10.1364/OE.19.011415 journal journal Optics Express \ volume 19 ,\ pages 11415 ( year 20...

  91. [102]

    Zhang , author Q.-T

    author author X. Zhang , author Q.-T. \ Cao , author Z. Wang , author Y.-x. \ Liu , author C.-W. \ Qiu , author L. Yang , author Q. Gong ,\ and\ author Y.-F. \ Xiao ,\ title title Symmetry-breaking-induced nonlinear optics at a microcavity surface , \ https://doi.org/10.1038/s...

  92. [103]

    Li , author X

    author author P. Li , author X. Jiang , author M. Huang , author L. Kang , author S. Chen , author A. Gali ,\ and\ author B. Huang ,\ title title Defect engineering of second-harmonic generation in nonlinear optical semiconductors , \ https://doi.org/10.1016/j.xcrp.2022.101111...

  93. [104]

    Abulikemu , author Y

    author author A. Abulikemu , author Y. Kainuma , author T. An ,\ and\ author M. Hase ,\ title title Second-Harmonic Generation in Bulk Diamond Based on Inversion Symmetry Breaking by Color Centers , \ https://doi.org/10.1021/acsphotonics.0c01806 journal journal ACS Photonics \...

  94. [105]

    Abulikemu , author Y

    author author A. Abulikemu , author Y. Kainuma , author T. An ,\ and\ author M. Hase ,\ title title Temperature-dependent second-harmonic generation from color centers in diamond , \ https://doi.org/10.1364/ol.455437 journal journal Optics Letters \ volume 47 ,\ pages 1693 ( y...

  95. [106]

    Bluvstein , author Z

    author author D. Bluvstein , author Z. Zhang ,\ and\ author A. C. B. \ Jayich ,\ title title Identifying and Mitigating Charge Instabilities in Shallow Diamond Nitrogen-Vacancy Centers , \ https://doi.org/10.1103/PhysRevLett.122.076101 journal journal Physical Review Letters \...

  96. [107]

    Stacey , author N

    author author A. Stacey , author N. Dontschuk , author J.-P. \ Chou , author D. A. \ Broadway , author A. K. \ Schenk , author M. J. \ Sear , author J.-P. \ Tetienne , author A. Hoffman , author S. Prawer , author C. I. \ Pakes , author A. Tadich , author N. P. \ de Leon , aut...

  97. [108]

    author author V. M. \ Acosta , author E. Bauch , author M. P. \ Ledbetter , author C. Santori , author K.-M. C. \ Fu , author P. E. \ Barclay , author R. G. \ Beausoleil , author H. Linget , author J. F. \ Roch , author F. Treussart , author S. Chemerisov , author W. Gawlik ,\...

  98. [109]

    Bourgeois , author J

    author author E. Bourgeois , author J. Soucek , author J. Hruby , author M. Gulka ,\ and\ author M. Nesladek ,\ title title Photoelectric detection of nitrogen-vacancy centers magnetic resonances in diamond: Role of charge exchanges with other optoelectrically active defects ,...

  99. [111]

    author author M. K. \ Balakirev , author L. I. \ Vostrikova , author V. A. \ Smirnov ,\ and\ author M. V. \ \' E ntin ,\ title title Relaxation of the optical density of glass modulated with bichromatic radiation , \ https://doi.org/10.1134/1.567000 journal journal Journal of ...

  100. [112]

    Rondin , author G

    author author L. Rondin , author G. Dantelle , author A. Slablab , author F. Grosshans , author F. Treussart , author P. Bergonzo , author S. Perruchas , author T. Gacoin , author M. Chaigneau , author H.-C. \ Chang , author V. Jacques ,\ and\ author J.-F. \ Roch ,\ title titl...

  101. [113]

    Kaviani , author P

    author author M. Kaviani , author P. De \' a k , author B. Aradi , author T. Frauenheim , author J.-p. \ Chou ,\ and\ author A. Gali ,\ title title Proper Surface Termination for Luminescent Near-Surface NV Centers in Diamond , \ https://doi.org/10.1021/nl501927y journal journ...

  102. [114]

    Guha , author F

    author author B. Guha , author F. Marsault , author F. Cadiz , author L. Morgenroth , author V. Ulin , author V. Berkovitz , author A. Lema \^ i tre , author C. Gomez , author A. Amo , author S. Combri \' e , author B. G \' e rard , author G. Leo ,\ and\ author I. Favero ,\ ti...

  103. [115]

    author author M. V. \ Hauf , author B. Grotz , author B. Naydenov , author M. Dankerl , author S. Pezzagna , author J. Meijer , author F. Jelezko , author J. Wrachtrup , author M. Stutzmann , author F. Reinhard ,\ and\ author J. A. \ Garrido ,\ title title Chemical control of ...

  104. [116]

    \ Zhang , author J

    author author Z.-H. \ Zhang , author J. A. \ Zuber , author L. V. \ Rodgers , author X. Gui , author P. Stevenson , author M. Li , author M. Batzer , author M. Grimau Puigibert , author B. J. \ Shields , author A. M. \ Edmonds , author N. Palmer , author M. L. \ Markham , auth...

  105. [118]

    author author E. M. \ Purcell , author H. C. \ Torrey ,\ and\ author R. V. \ Pound ,\ title title Resonance Absorption by Nuclear Magnetic Moments in a Solid , \ https://doi.org/10.1103/PhysRev.69.37 journal journal Physical Review \ volume 69 ,\ pages 37--38 ( year 1946 ) NoStop

  106. [119]

    Faraon , author P

    author author A. Faraon , author P. E. \ Barclay , author C. Santori , author K.-M. C. \ Fu ,\ and\ author R. G. \ Beausoleil ,\ title title Resonant enhancement of the zero-phonon emission from a colour centre in a diamond cavity , \ https://doi.org/10.1038/nphoton.2011.52 jo...

  107. [120]

    author author P. E. \ Barclay , author K.-M. C. \ Fu , author C. Santori , author A. Faraon ,\ and\ author R. G. \ Beausoleil ,\ title title Hybrid Nanocavity Resonant Enhancement of Color Center Emission in Diamond , \ https://doi.org/10.1103/PhysRevX.1.011007 journal journal...

  108. [121]

    Riedel , author I

    author author D. Riedel , author I. S \" o llner , author B. J. \ Shields , author S. Starosielec , author P. Appel , author E. Neu , author P. Maletinsky ,\ and\ author R. J. \ Warburton ,\ title title Deterministic Enhancement of Coherent Photon Generation from a Nitrogen-Va...

  109. [122]

    Zifkin , author C

    author author R. Zifkin , author C. D. \ Rodr \' i guez Rosenblueth , author E. Janitz , author Y. Fontana ,\ and\ author L. Childress ,\ title title Lifetime Reduction of Single Germanium-Vacancy Centers in Diamond via a Tunable Open Microcavity , \ https://doi.org/10.1103/PR...

  110. [123]

    Herrmann , author J

    author author Y. Herrmann , author J. Fischer , author J. M. \ Brevoord , author C. Sauerzapf , author L. G. C. \ Wienhoven , author L. J. \ Feije , author M. Pasini , author M. Eschen , author M. Ruf , author M. J. \ Weaver ,\ and\ author R. Hanson ,\ title title Coherent Cou...

  111. [124]

    Meesala , author Y.-I

    author author S. Meesala , author Y.-I. \ Sohn , author B. Pingault , author L. Shao , author H. A. \ Atikian , author J. Holzgrafe , author M. G \" u ndoğan , author C. Stavrakas , author A. Sipahigil , author C. Chia , author R. Evans , author M. J. \ Burek , author M. Zhang...

  112. [125]

    Machielse , author S

    author author B. Machielse , author S. Bogdanovic , author S. Meesala , author S. Gauthier , author M. J. \ Burek , author G. Joe , author M. Chalupnik , author Y. I. \ Sohn , author J. Holzgrafe , author R. E. \ Evans , author C. Chia , author H. Atikian , author M. K. \ Bhas...

  113. [126]

    author author J. M. \ Brevoord , author L. G. C. \ Wienhoven , author N. Codreanu , author T. Ishiguro , author E. van Leeuwen , author M. Iuliano , author L. De Santis , author C. Waas , author H. K. C. \ Beukers , author T. Turan , author C. Errando-Herranz , author K. Kawag...

  114. [127]

    Tamarat , author T

    author author P. Tamarat , author T. Gaebel , author J. R. \ Rabeau , author M. Khan , author A. D. \ Greentree , author H. Wilson , author L. C. L. \ Hollenberg , author S. Prawer , author P. Hemmer , author F. Jelezko ,\ and\ author J. Wrachtrup ,\ title title Stark Shift Co...

  115. [128]

    author author V. M. \ Acosta , author C. Santori , author A. Faraon , author Z. Huang , author K.-M. C. \ Fu , author A. Stacey , author D. A. \ Simpson , author K. Ganesan , author S. Tomljenovic-Hanic , author A. D. \ Greentree , author S. Prawer ,\ and\ author R. G. \ Beaus...

  116. [129]

    author author E. R. \ Schmidgall , author S. Chakravarthi , author M. Gould , author I. R. \ Christen , author K. Hestroffer , author F. Hatami ,\ and\ author K.-M. C. \ Fu ,\ title title Frequency Control of Single Quantum Emitters in Integrated Photonic Circuits , \ https://...

  117. [130]

    Aghaeimeibodi , author D

    author author S. Aghaeimeibodi , author D. Riedel , author A. E. \ Rugar , author C. Dory ,\ and\ author J. Vu c kovi \' c ,\ title title Electrical Tuning of Tin-Vacancy Centers in Diamond , \ https://doi.org/10.1103/PhysRevApplied.15.064010 journal journal Physical Review Ap...

  118. [131]

    De Santis , author M

    author author L. De Santis , author M. E. \ Trusheim , author K. C. \ Chen ,\ and\ author D. R. \ Englund ,\ title title Investigation of the Stark Effect on a Centrosymmetric Quantum Emitter in Diamond , \ https://doi.org/10.1103/PhysRevLett.127.147402 journal journal Physica...

  119. [132]

    Gritsch , author A

    author author A. Gritsch , author A. Ulanowski ,\ and\ author A. Reiserer ,\ title title Purcell enhancement of single-photon emitters in silicon , \ https://doi.org/10.1364/OPTICA.486167 journal journal Optica \ volume 10 ,\ pages 783 ( year 2023 ) NoStop

  120. [133]

    author author R. E. \ Evans , author M. K. \ Bhaskar , author D. D. \ Sukachev , author C. T. \ Nguyen , author A. Sipahigil , author M. J. \ Burek , author B. Machielse , author G. H. \ Zhang , author A. S. \ Zibrov , author E. Bielejec , author H. Park , author M. Lon c ar ,...

  121. [134]

    author author D. M. \ Lukin , author C. Dory , author M. A. \ Guidry , author K. Y. \ Yang , author S. D. \ Mishra , author R. Trivedi , author M. Radulaski , author S. Sun , author D. Vercruysse , author G. H. \ Ahn ,\ and\ author J. Vu c kovi \' c ,\ title title 4H-silicon-c...

  122. [135]

    author author A. E. \ Rugar , author S. Aghaeimeibodi , author D. Riedel , author C. Dory , author H. Lu , author P. J. \ McQuade , author Z. X. \ Shen , author N. A. \ Melosh ,\ and\ author J. Vu c kovi \' c ,\ title title Quantum photonic interface for tin-vacancy centers in...

  123. [136]

    Orphal-Kobin , author K

    author author L. Orphal-Kobin , author K. Unterguggenberger , author T. Pregnolato , author N. Kemf , author M. Matalla , author R.-S. \ Unger , author I. Ostermay , author G. Pieplow ,\ and\ author T. Schr \" o der ,\ title title Optically Coherent Nitrogen-Vacancy Defect Cen...

  124. [137]

    Wang , author Z

    author author C. Wang , author Z. Fang , author A. Yi , author B. Yang , author Z. Wang , author L. Zhou , author C. Shen , author Y. Zhu , author Y. Zhou , author R. Bao , author Z. Li , author Y. Chen , author K. Huang , author J. Zhang , author Y. Cheng ,\ and\ author X. Ou...

  125. [138]

    Leo , author T

    author author F. Leo , author T. Hansson , author I. Ricciardi , author M. De Rosa , author S. Coen , author S. Wabnitz ,\ and\ author M. Erkintalo ,\ title title Frequency-comb formation in doubly resonant second-harmonic generation , \ https://doi.org/10.1103/PhysRevA.93.043...

  126. [139]

    author author J. B. \ Surya , author X. Guo , author C.-L. \ Zou ,\ and\ author H. X. \ Tang ,\ title title Control of second-harmonic generation in doubly resonant aluminum nitride microrings to address a rubidium two-photon clock transition , \ https://doi.org/10.1364/OL.43....

  127. [140]

    \ Wang , author Y.-H

    author author J.-Q. \ Wang , author Y.-H. \ Yang , author M. Li , author H.-Q. \ Zhou , author X.-B. \ Xu , author J.-Z. \ Zhang , author C.-H. \ Dong , author G.-C. \ Guo ,\ and\ author C.-L. \ Zou ,\ title title Synthetic five-wave mixing in an integrated microcavity for vis...

  128. [141]

    Rivoire , author Z

    author author K. Rivoire , author Z. Lin , author F. Hatami ,\ and\ author J. Vu c kovi \' c ,\ title title Sum-frequency generation in doubly resonant GaP photonic crystal nanocavities , \ https://doi.org/https://doi.org/10.1063/1.3469936 journal journal Applied Physics Lette...

  129. [142]

    Minkov , author D

    author author M. Minkov , author D. Gerace ,\ and\ author S. Fan ,\ title title Doubly resonant ^ (2) nonlinear photonic crystal cavity based on a bound state in the continuum , \ https://doi.org/https://doi.org/10.1364/OPTICA.6.001039 journal journal Optica \ volume 6 ,\ page...

  130. [143]

    Khanaliloo , author H

    author author B. Khanaliloo , author H. Jayakumar , author A. C. \ Hryciw , author D. P. \ Lake , author H. Kaviani ,\ and\ author P. E. \ Barclay ,\ title title Single-Crystal Diamond Nanobeam Waveguide Optomechanics , \ https://doi.org/10.1103/PhysRevX.5.041051 journal journ...

  131. [144]

    Khanaliloo , author M

    author author B. Khanaliloo , author M. Mitchell , author A. C. \ Hryciw ,\ and\ author P. E. \ Barclay ,\ title title High- Q/V Monolithic Diamond Microdisks Fabricated with Quasi-isotropic Etching , \ https://doi.org/10.1021/acs.nanolett.5b01346 journal journal Nano Letters ...

  132. [145]

    Mitchell , author B

    author author M. Mitchell , author B. Khanaliloo , author D. P. \ Lake , author T. Masuda , author J. P. \ Hadden ,\ and\ author P. E. \ Barclay ,\ title title Single-crystal diamond low-dissipation cavity optomechanics , \ https://doi.org/10.1364/OPTICA.3.000963 journal journ...

  133. [146]

    Mouradian , author N

    author author S. Mouradian , author N. H. \ Wan , author T. Schröder ,\ and\ author D. Englund ,\ title title Rectangular photonic crystal nanobeam cavities in bulk diamond , \ https://doi.org/10.1063/1.4992118 journal journal Applied Physics Letters \ volume 111 ,\ pages 0211...

  134. [147]

    Chan , author M

    author author J. Chan , author M. Eichenfield , author R. Camacho ,\ and\ author O. Painter ,\ title title Optical and mechanical design of a “zipper” photonic crystal optomechanical cavity , \ https://doi.org/10.1364/OE.17.003802 journal journal Optics Express \ volume 17 ,\ ...

  135. [148]

    Quan \ and\ author M

    author author Q. Quan \ and\ author M. Loncar ,\ title title Deterministic design of wavelength scale, ultra-high q photonic crystal nanobeam cavities , \ https://doi.org/10.1364/OE.19.018529 journal journal Optics Express \ volume 19 ,\ pages 18529--18542 ( year 2011 ) NoStop

  136. [149]

    author author C. P. \ Michael , author M. Borselli , author T. J. \ Johnson , author C. Chrystal ,\ and\ author O. Painter ,\ title title An optical fiber-taper probe for wafer-scale microphotonic device characterization , \ https://doi.org/10.1364/OE.15.004745 journal journal...

  137. [150]

    author author P. E. \ Barclay ,\ title Fiber-coupled nanophotonic devices for nonlinear optics and cavity QED ,\ https://doi.org/https://www.doi.org/10.7907/JKP4-SC05 Ph.D. thesis ,\ school California Institute of Technology ( year 2007 ) NoStop

  138. [151]

    Fl gan , author D

    author author S. Fl gan , author D. Riedel , author A. Javadi , author T. Jakubczyk , author P. Maletinsky ,\ and\ author R. J. \ Warburton ,\ title title A diamond-confined open microcavity featuring a high quality-factor and a small mode-volume , \ https://doi.org/10.1063/5....

  139. [152]

    Khitrova , author H

    author author G. Khitrova , author H. M. \ Gibbs , author M. Kira , author S. W. \ Koch ,\ and\ author A. Scherer ,\ title title Vacuum Rabi splitting in semiconductors , \ https://doi.org/10.1038/nphys227 journal journal Nature Physics \ volume 2 ,\ pages 81--90 ( year 2006 ) NoStop

  140. [153]

    Santori , author P

    author author C. Santori , author P. E. \ Barclay , author K.-M. C. \ Fu , author R. G. \ Beausoleil , author S. Spillane ,\ and\ author M. Fisch ,\ title title Nanophotonics for quantum optics using nitrogen-vacancy centers in diamond , \ https://doi.org/10.1088/0957-4484/21/...

  141. [154]

    Hecht ,\ https://books.google.ca/books?id=32QXDQAAQBAJ title Optics \ ( publisher Pearson Education ,\ year 2016 ) NoStop

    author author E. Hecht ,\ https://books.google.ca/books?id=32QXDQAAQBAJ title Optics \ ( publisher Pearson Education ,\ year 2016 ) NoStop

  142. [155]

    author author H. R. \ Phillip \ and\ author E. A. \ Taft ,\ title title Kramers-kronig analysis of reflectance data for diamond , \ https://doi.org/10.1103/PhysRev.136.A1445 journal journal Phys. Rev. \ volume 136 ,\ pages A1445--A1448 ( year 1964 ) NoStop

  143. [156]

    author author S. M. \ Spillane , author T. J. \ Kippenberg , author O. J. \ Painter ,\ and\ author K. J. \ Vahala ,\ title title Ideality in a Fiber-Taper-Coupled Microresonator System for Application to Cavity Quantum Electrodynamics , \ https://doi.org/10.1103/PhysRevLett.91...

  144. [157]

    author author A. A. \ Clerk , author M. H. \ Devoret , author S. M. \ Girvin , author F. Marquardt ,\ and\ author R. J. \ Schoelkopf ,\ title title Introduction to quantum noise, measurement, and amplification , \ https://doi.org/10.1103/RevModPhys.82.1155 journal journal Revi...

  145. [158]

    Mitchell ,\ title Coherent Cavity Optomechanics in Wide-Band Gap Materials ,\ http://hdl.handle.net/1880/111240 Ph.D

    author author M. Mitchell ,\ title Coherent Cavity Optomechanics in Wide-Band Gap Materials ,\ http://hdl.handle.net/1880/111240 Ph.D. thesis ,\ school University of Calgary ( year 2019 ) NoStop

  146. [159]

    author author D. P. \ Lake , author M. Mitchell , author Y. Kamaliddin ,\ and\ author P. E. \ Barclay ,\ title title Optomechanically Induced Transparency and Cooling in Thermally Stable Diamond Microcavities , \ https://doi.org/10.1021/acsphotonics.7b01516 journal journal ACS...

  147. [160]

    author author P. M. \ Johansen ,\ title title Photorefractive space–charge field formation: linear and nonlinear effects , \ https://doi.org/10.1088/1464-4258/5/6/R302 journal journal Journal of Optics A: Pure and Applied Optics \ volume 5 ,\ pages S398--S415 ( year 2003 ) NoStop

  148. [161]

    Hou , author B

    author author J. Hou , author B. Xue , author R. Ma , author S. Yu , author Y. Zhu , author X. Chen , author J. Lu ,\ and\ author W. Wan ,\ title title UV-enhanced photorefractive response rate in a thin-film lithium niobate microdisk , \ https://doi.org/10.1364/OL.527579 jour...

  149. [162]

    Manson \ and\ author J

    author author N. Manson \ and\ author J. Harrison ,\ title title Photo-ionization of the nitrogen-vacancy center in diamond , \ https://doi.org/10.1016/j.diamond.2005.06.027 journal journal Diamond and Related Materials \ volume 14 ,\ pages 1705--1710 ( year 2005 ) NoStop

  150. [163]

    author author P. K. \ Shandilya , author V. K. \ Kavatamane , author S. Fl gan , author D. P. \ Lake , author D. Sukachev ,\ and\ author P. E. \ Barclay ,\ title title Nonlinear optical pumping to a diamond NV center dark state , \ http://arxiv.org/abs/2411.10638 journal journ...

  151. [164]

    Santori , author P

    author author C. Santori , author P. E. \ Barclay , author K.-M. C. \ Fu ,\ and\ author R. G. \ Beausoleil ,\ title title Vertical distribution of nitrogen-vacancy centers in diamond formed by ion implantation and annealing , \ https://doi.org/10.1103/PhysRevB.79.125313 journa...

  152. [165]

    author author K.-M. C. \ Fu , author C. Santori , author P. E. \ Barclay ,\ and\ author R. G. \ Beausoleil ,\ title title Conversion of neutral nitrogen-vacancy centers to negatively charged nitrogen-vacancy centers through selective oxidation , \ https://doi.org/10.1063/1.336...

  153. [166]

    Haque \ and\ author S

    author author A. Haque \ and\ author S. Sumaiya ,\ title title An Overview on the Formation and Processing of Nitrogen-Vacancy Photonic Centers in Diamond by Ion Implantation , \ https://doi.org/10.3390/jmmp1010006 journal journal Journal of Manufacturing and Materials Process...

  154. [167]

    Luo , author L

    author author T. Luo , author L. Lindner , author R. Blinder , author M. Capelli , author J. Langer , author V. Cimalla , author F. A. \ Hahl , author X. Vidal ,\ and\ author J. Jeske ,\ title title Rapid determination of single substitutional nitrogen N _ s concentration in d...

  155. [168]

    author author N. B. \ Manson , author M. Hedges , author M. S. J. \ Barson , author R. Ahlefeldt , author M. W. \ Doherty , author H. Abe , author T. Ohshima ,\ and\ author M. J. \ Sellars ,\ title title NV ^ - --N ^ + pair centre in 1b diamond , \ https://doi.org/10.1088/1367...

  156. [169]

    Castellan , author A

    author author C. Castellan , author A. Trenti , author C. Vecchi , author A. Marchesini , author M. Mancinelli , author M. Ghulinyan , author G. Pucker ,\ and\ author L. Pavesi ,\ title title On the origin of second harmonic generation in silicon waveguides with silicon nitrid...

  157. [170]

    \ Zhu , author Z.-G

    author author J.-C. \ Zhu , author Z.-G. \ Chen , author X.-H. \ Liu , author Y.-J. \ Gao , author J.-B. \ Mu , author Z.-Y. \ Wang , author W. Han ,\ and\ author G. Jia ,\ title title Investigation on the electric-field-induced Pockels effect and optical rectification in near...

  158. [171]

    Castellan , author R

    author author C. Castellan , author R. Franchi , author S. Biasi , author M. Bernard , author M. Ghulinyan ,\ and\ author L. Pavesi ,\ title title Field-Induced Nonlinearities in Silicon Waveguides Embedded in Lateral p-n Junctions , \ https://doi.org/10.3389/fphy.2019.00104 j...

  159. [172]

    Chakraborty , author J

    author author U. Chakraborty , author J. Carolan , author G. Clark , author D. Bunandar , author G. Gilbert , author J. Notaros , author M. R. \ Watts ,\ and\ author D. R. \ Englund ,\ title title Cryogenic operation of silicon photonic modulators based on the DC Kerr effect ,...

  160. [173]

    Friedman , author H

    author author A. Friedman , author H. Nejadriahi , author R. Sharma ,\ and\ author Y. Fainman ,\ title title Demonstration of the DC-Kerr effect in silicon-rich nitride , \ https://doi.org/10.1364/OL.432359 journal journal Optics Letters \ volume 46 ,\ pages 4236 ( year 2021 ) NoStop

  161. [174]

    Zabelich , author E

    author author B. Zabelich , author E. Nitiss , author A. Stroganov ,\ and\ author C. S. \ Br \` e s ,\ title title Linear Electro-optic Effect in Silicon Nitride Waveguides Enabled by Electric-Field Poling , \ https://doi.org/10.1021/acsphotonics.2c00888 journal journal ACS Ph...

  162. [175]

    Peltier , author W

    author author J. Peltier , author W. Zhang , author L. Virot , author C. Lafforgue , author L. Deniel , author D. Marris-Morini , author G. Aubin , author F. Amar , author D. Tran , author X. Yan , author C. G. \ Littlejohns , author C. Alonso-Ramos , author K. Li , author D. ...

  163. [176]

    Rosa , author M

    author author J. Rosa , author M. Van e c ek , author M. Nesl \' a dek ,\ and\ author L. Stals ,\ title title Photoionization cross-section of dominant defects in CVD diamond , \ https://doi.org/10.1016/S0925-9635(98)00354-9 journal journal Diamond and Related Materials \ volu...

  164. [177]

    Bourgeois , author E

    author author E. Bourgeois , author E. Londero , author K. Buczak , author J. Hruby , author M. Gulka , author Y. Balasubramaniam , author G. Wachter , author J. Stursa , author K. Dobes , author F. Aumayr , author M. Trupke , author A. Gali ,\ and\ author M. Nesladek ,\ title...

  165. [178]

    author author M. W. \ Doherty , author N. B. \ Manson , author P. Delaney ,\ and\ author L. C. L. \ Hollenberg ,\ title title The negatively charged nitrogen-vacancy centre in diamond: the electronic solution , \ https://iopscience.iop.org/article/10.1088/1367-2630/13/2/025019...

  166. [179]

    Thiering \ and\ author A

    author author G. Thiering \ and\ author A. Gali ,\ title title Photoexcitation and recombination processes of the neutral nitrogen-vacancy center in diamond from first principles , \ https://doi.org/10.1063/5.0221228 journal journal Journal of Applied Physics \ volume 136 ( ye...

  167. [180]

    Aude Craik , author P

    author author D. Aude Craik , author P. Kehayias , author A. Greenspon , author X. Zhang , author M. Turner , author J. Schloss , author E. Bauch , author C. Hart , author E. Hu ,\ and\ author R. Walsworth ,\ title title Microwave-assisted spectroscopy technique for studying c...

  168. [181]

    Kuate Defo , author A

    author author R. Kuate Defo , author A. W. \ Rodriguez , author E. Kaxiras ,\ and\ author S. L. \ Richardson ,\ title title Theoretical investigation of charge transfer between two defects in a wide band gap semiconductor , \ https://doi.org/10.1103/PhysRevB.107.125305 journal...

  169. [182]

    author author D. A. \ Broadway , author N. Dontschuk , author A. Tsai , author S. E. \ Lillie , author C. T. \ Lew , author J. C. \ McCallum , author B. C. \ Johnson , author M. W. \ Doherty , author A. Stacey , author L. C. L. \ Hollenberg ,\ and\ author J.-P. \ Tetienne ,\ t...

  170. [183]

    Mittiga , author S

    author author T. Mittiga , author S. Hsieh , author C. Zu , author B. Kobrin , author F. Machado , author P. Bhattacharyya , author N. Z. \ Rui , author A. Jarmola , author S. Choi , author D. Budker ,\ and\ author N. Y. \ Yao ,\ title title Imaging the local charge environmen...

  171. [184]

    Yuan , author M

    author author Z. Yuan , author M. Fitzpatrick , author L. V. H. \ Rodgers , author S. Sangtawesin , author S. Srinivasan ,\ and\ author N. P. \ de Leon ,\ title title Charge state dynamics and optically detected electron spin resonance contrast of shallow nitrogen-vacancy cent...

  172. [185]

    Block , author B

    author author M. Block , author B. Kobrin , author A. Jarmola , author S. Hsieh , author C. Zu , author N. Figueroa , author V. Acosta , author J. Minguzzi , author J. Maze , author D. Budker ,\ and\ author N. Yao ,\ title title Optically Enhanced Electric Field Sensing Using ...

  173. [186]

    author author L. M. \ Todenhagen \ and\ author M. S. \ Brandt ,\ title title Optical and electrical readout of diamond nv centers in dependence of the excitation wavelength , \ https://doi.org/10.1063/5.0264362 journal journal Applied Physics Letters \ volume 126 ,\ pages 1940...

  174. [187]

    Pieplow , author C

    author author G. Pieplow , author C. G. \ Torun , author C. Gurr , author J. H. D. \ Munns , author F. M. \ Herrmann , author A. Thies , author T. Pregnolato ,\ and\ author T. Schr \" o der ,\ title title Quantum electrometer for time-resolved material science at the atomic la...

Pith tools

Reviewed August 6, 2026 · model on record in the stance chip above.