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Paper Citation Record · LEDGER

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals

As of 8 August 2026, this Paper Citation Record lists 73 of 73 outbound references and 2 inbound Pith citation observations for arXiv:2510.06948.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2510.06948 v3

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measured 73 of 73 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-04T11:09:31.469307Z

measured 75 of 75 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-08T06:32:00.761636+00:00

measured 2 of 2 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-07-30T11:32:37.910563Z

measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: arxiv_reference, observed 2026-05-11T18:21:06.486689Z

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73 of 73 outbound references displayed

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Outbound references

Observation 5e85cd4d-058c-4722-a7df-f340585ab013 · outbound

This paper cites GWTC-4.0: Updating the Gravitational-Wave Transient Catalog with Observations from the First Part of the Fourth LIGO-Virgo-KAGRA Observing Run.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals GWTC-4.0: Updating the Gravitational-Wave Transient Catalog with Observations from the First Part of the Fourth LIGO-Virgo-KAGRA Observing Run

Reference 1

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Observation 37bca66c-a5cb-4302-a060-250ec40d8496 · outbound

This paper cites GW231123: a Binary Black Hole Merger with Total Mass 190-265 $M_{\odot}$.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals GW231123: a Binary Black Hole Merger with Total Mass 190-265 $M_{\odot}$

Reference 2

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Observation d4be0e48-fa39-4264-b827-97890ee6b18c · outbound

This paper cites Laser Interferometer Space Antenna.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Laser Interferometer Space Antenna

Reference 3

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Observation ef0b4df7-b7d7-42b7-9a2a-6400be580a13 · outbound

This paper cites LISA Definition Study Report.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals LISA Definition Study Report

Reference 4

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Observation 64ff1d22-082a-4a3f-8719-818eff6c9888 · outbound

This paper cites LISA Capture Sources: Approximate Waveforms, Signal-to-Noise Ratios, and Parameter Estimation Accuracy.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals LISA Capture Sources: Approximate Waveforms, Signal-to-Noise Ratios, and Parameter Estimation Accuracy

Reference 5

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Observation b35941ae-3494-4aa4-be70-1c37e32ca148 · outbound

This paper cites Drasco and S.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Drasco and S

Reference 6

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Observation fbb2f311-bc9a-4f41-9d2e-1a3933ba89e7 · outbound

This paper cites Science with the space-based interferometer LISA. V: Extreme mass-ratio inspirals.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Science with the space-based interferometer LISA. V: Extreme mass-ratio inspirals

Reference 7

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Observation f89e6768-6d66-49ab-a6af-21efb4f7647f · outbound

This paper cites Waveform Modelling for the Laser Interferometer Space Antenna.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Waveform Modelling for the Laser Interferometer Space Antenna

Reference 8

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Observation 36d13fd3-57c7-4aa5-bb64-e72bfec29131 · outbound

This paper cites Impact of relativistic waveforms in LISA's science objectives with extreme-mass-ratio inspirals.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Impact of relativistic waveforms in LISA's science objectives with extreme-mass-ratio inspirals

Reference 9

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Observation cfb76235-1971-4a8d-8211-da05909fe374 · outbound

This paper cites In-situ extreme mass ratio inspirals via sub-parsec formation and migration of stars in thin, gravitationally unstable AGN discs.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals In-situ extreme mass ratio inspirals via sub-parsec formation and migration of stars in thin, gravitationally unstable AGN discs

Reference 10

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Observation 0f32e9e4-e6e0-4acb-bda6-99aefca510c9 · outbound

This paper cites Particle Dark Matter: Evidence, Candidates and Constraints.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Particle Dark Matter: Evidence, Candidates and Constraints

Reference 11

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Observation 0a2c4e36-6e06-49e2-abdb-f0a2bf729566 · outbound

This paper cites Can environmental effects spoil precision gravitational-wave astrophysics?.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Can environmental effects spoil precision gravitational-wave astrophysics?

Reference 12

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Observation a28f1046-5157-4813-966b-f7c157976301 · outbound

This paper cites Measuring the dark matter environments of black hole binaries with gravitational waves.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Measuring the dark matter environments of black hole binaries with gravitational waves

Reference 13

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Observation fed88c7c-3cd4-4d98-9eff-650302b52515 · outbound

This paper cites Probing Ultralight Bosons with Binary Black Holes.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Probing Ultralight Bosons with Binary Black Holes

Reference 14

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Observation 88adad3f-b7d7-4a8a-b524-765df50cadb8 · outbound

This paper cites Ultralight boson cloud depletion in binary systems.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Ultralight boson cloud depletion in binary systems

Reference 15

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Observation 2598b51b-afec-43c6-963e-f2ddafd99a4d · outbound

This paper cites The influence of the hydrodynamic drag from an accretion torus on extreme mass-ratio inspirals.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals The influence of the hydrodynamic drag from an accretion torus on extreme mass-ratio inspirals

Reference 16

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Observation 13cebfcf-ee42-44ae-bcf0-cda9e90c4b94 · outbound

This paper cites The Effect of Massive Perturbers on Extreme Mass-Ratio Inspiral Waveforms.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals The Effect of Massive Perturbers on Extreme Mass-Ratio Inspiral Waveforms

Reference 17

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Observation b4bd1420-cf34-4e50-a3c7-6cc61b6ad538 · outbound

This paper cites Forced motion near black holes.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Forced motion near black holes

Reference 18

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Observation 1de4e129-80f9-4d20-9cff-28cab2770313 · outbound

This paper cites Observable Signatures of EMRI Black Hole Binaries Embedded in Thin Accretion Disks.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Observable Signatures of EMRI Black Hole Binaries Embedded in Thin Accretion Disks

Reference 19

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Observation 2f04cb40-6904-49a0-82ad-b5f9dd15e00f · outbound

This paper cites an unresolved cited work.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Unresolved cited work

Reference 20

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Observation 20e98868-9c47-49ea-bf8c-612b45c045c3 · outbound

This paper cites Detecting Kozai-Lidov imprints on the gravitational waves of intermediate-mass black holes in galactic nuclei.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Detecting Kozai-Lidov imprints on the gravitational waves of intermediate-mass black holes in galactic nuclei

Reference 21

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Observation 4fe68bd7-2b18-4cda-8893-dd26b3cbd85f · outbound

This paper cites Gravitational-wave detection and parameter estimation for accreting black-hole binaries and their electromagnetic counterpart.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Gravitational-wave detection and parameter estimation for accreting black-hole binaries and their electromagnetic counterpart

Reference 22

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Observation bde8d14a-5098-4fe0-97b4-39aa730132f8 · outbound

This paper cites Ready-to-use analytic model for gravitational waves from a hierarchical triple with Kozai-Lidov oscillations.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Ready-to-use analytic model for gravitational waves from a hierarchical triple with Kozai-Lidov oscillations

Reference 23

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Observation 3c116c68-b75f-42ac-8773-0ea5ab5384c4 · outbound

This paper cites Probing Accretion Physics with Gravitational Waves.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Probing Accretion Physics with Gravitational Waves

Reference 24

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Observation 96f13c68-1d5c-4eeb-b542-dddaa1ef273a · outbound

This paper cites Constraining accretion physics with gravitational waves from eccentric extreme-mass-ratio inspirals.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Constraining accretion physics with gravitational waves from eccentric extreme-mass-ratio inspirals

Reference 25

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Observation 738af24c-3930-4ad6-b8fe-3494534f71c3 · outbound

This paper cites The implications of stochastic gas torques for asymmetric binaries in the LISA band.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals The implications of stochastic gas torques for asymmetric binaries in the LISA band

Reference 26

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Observation 01c7e57e-0212-458f-bc0f-cd255d8639d3 · outbound

This paper cites Adiabatic waveforms for extreme mass-ratio inspirals via multivoice decomposition in time and frequency.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Adiabatic waveforms for extreme mass-ratio inspirals via multivoice decomposition in time and frequency

Reference 27

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Observation ecf767a7-75c5-46e8-8fe1-b2feb0a2225d · outbound

This paper cites Extreme mass-ratio inspiral and waveforms for a spinning body into a Kerr black hole via osculating geodesics and near-identity transformations.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Extreme mass-ratio inspiral and waveforms for a spinning body into a Kerr black hole via osculating geodesics and near-identity transformations

Reference 28

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Observation e023a92c-e660-4c7e-b3f4-67edfa39d5ba · outbound

This paper cites The Fast and the Frame-Dragging: Efficient waveforms for asymmetric-mass eccentric equatorial inspirals into rapidly-spinning black holes.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals The Fast and the Frame-Dragging: Efficient waveforms for asymmetric-mass eccentric equatorial inspirals into rapidly-spinning black holes

Reference 29

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Observation 575ec72f-cbf2-478a-87bf-e69b7d9a7b4a · outbound

This paper cites Speri, M.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Speri, M

Reference 30

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Observation d3c4a48b-3cf9-4cb0-9f22-f8112b2bbbbb · outbound

This paper cites Viscous torque in turbulent magnetized AGN accretion disks and its effects on EMRI's gravitational waves.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Viscous torque in turbulent magnetized AGN accretion disks and its effects on EMRI's gravitational waves

Reference 31

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Observation 2a57a830-dc9c-42ee-8de5-4999baa01822 · outbound

This paper cites Relativistic dynamical friction in a collisional fluid.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Relativistic dynamical friction in a collisional fluid

Reference 32

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Observation 0b8efef2-beb0-4e92-b442-a505e9a717fd · outbound

This paper cites Vicente, T.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Vicente, T

Reference 33

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Observation 656f40a5-0e9f-4bff-9d73-4670b8b543ab · outbound

This paper cites Hegade K.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Hegade K

Reference 34

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Observation 9f0d2d03-6d53-4e4c-a4f2-9a0d9438a5b4 · outbound

This paper cites Hegade K.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Hegade K

Reference 35

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Observation 30c622f4-a4ce-484c-8a6b-5ab4fdcad6ab · outbound

This paper cites Duque, L.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Duque, L

Reference 36

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Observation 36ed3aa8-b150-472a-b2d9-c8b4ac94f028 · outbound

This paper cites Kejriwal, L.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Kejriwal, L

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source=pdf_text observed=2026-08-04T11:09:27.247919Z digest=sha256:89afcc9a489a8dc38414415a2e8f79aeb27126c00450d746655a71b28f75148e

Observation cdd70dbb-caae-42dd-8ae2-5414d3261f4e · outbound

This paper cites FastEMRIWaveforms: New tools for millihertz gravitational-wave data analysis.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals FastEMRIWaveforms: New tools for millihertz gravitational-wave data analysis

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source=pdf_text observed=2026-08-04T11:09:27.424632Z digest=sha256:b6a7fdbd74589d8b2bb51801c061e42b50fde44df66179fb50cc194bd0dbb73f

Observation c9077ac8-c876-4372-8585-790be98bff0b · outbound

This paper cites Two timescale analysis of extreme mass ratio inspirals in Kerr. I. Orbital Motion.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Two timescale analysis of extreme mass ratio inspirals in Kerr. I. Orbital Motion

Reference 39

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source=pdf_text observed=2026-08-04T11:09:27.561625Z digest=sha256:be7718e7d64e259bbf1aaa2eb5153ff300fe76ef01d22db9a9651adf21aa65f4

Observation 811aa53d-9975-43a1-bdc6-4e32a310b0fb · outbound

This paper cites an unresolved cited work.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Unresolved cited work

Reference 40

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source=pdf_text observed=2026-08-04T11:09:27.711801Z digest=sha256:1769f22fd39a45737175896331d6b8c1416a81d6a770e6692b754e682b5177f2

Observation be9801d6-2eff-474d-b7ac-486331790189 · outbound

This paper cites Imprint of Accretion Disk-Induced Migration on Gravitational Waves from Extreme Mass Ratio Inspirals.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Imprint of Accretion Disk-Induced Migration on Gravitational Waves from Extreme Mass Ratio Inspirals

Reference 41

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source=pdf_text observed=2026-08-04T11:09:27.848140Z digest=sha256:90c8e95b2678dcafa541abad1775c6936739792e63a32ea65e94e226bdab14e6

Observation 51d648f5-fdaf-4664-a1b6-ec2744bcb4c8 · outbound

This paper cites Three-dimensional Interaction between a Planet and an Isothermal Gaseous Disk. III. Locally Isothermal Cases.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Three-dimensional Interaction between a Planet and an Isothermal Gaseous Disk. III. Locally Isothermal Cases

Reference 42

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source=pdf_text observed=2026-08-04T11:09:27.978516Z digest=sha256:664ccd36681eccad0dfaf5b247379bf1fdd9d437a89570e54134a7e59316dced

Observation 129567cf-3bf0-423f-8943-c0523223542c · outbound

This paper cites an unresolved cited work.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Unresolved cited work

Reference 43

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source=pdf_text observed=2026-08-04T11:09:28.173654Z digest=sha256:1276528c2b8149b8c55779cc3d98295ce0748ff38888f6500aa25ad9d61c4f01

Observation a8cf18ce-9235-4cfd-974e-47b63eaab0e6 · outbound

This paper cites Time Delay Interferometry with Moving Spacecraft Arrays.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Time Delay Interferometry with Moving Spacecraft Arrays

Reference 44

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source=pdf_text observed=2026-08-04T11:09:28.371519Z digest=sha256:0861bea40983b1ee4b78407469eb617e7495b9e3f9413db95912432a68f65a90

Observation 358b6744-9f9b-4d4e-99d1-d5e733656ed5 · outbound

This paper cites Assessing the data-analysis impact of LISA orbit approximations using a GPU-accelerated response model.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Assessing the data-analysis impact of LISA orbit approximations using a GPU-accelerated response model

Reference 45

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source=pdf_text observed=2026-08-04T11:09:28.450539Z digest=sha256:7ff2a45d9c7d524173bdcf155c262c9c3d66db3556d8b2a96b21c50b1036c22c

Observation 30851721-64d4-4978-9b63-54923b830dce · outbound

This paper cites Exploring the Bayesian parameter estimation of binary black holes with LISA.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Exploring the Bayesian parameter estimation of binary black holes with LISA

Reference 46

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source=pdf_text observed=2026-08-04T11:09:28.559766Z digest=sha256:3923fe25f45324536655564c95a05846811f3b3dcf32eb8861ceb8dfdc3b2ee9

Observation 34ffc6a8-03f9-4c76-b4aa-0c7c3c0cf334 · outbound

This paper cites Eryn : A multi-purpose sampler for Bayesian inference.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Eryn : A multi-purpose sampler for Bayesian inference

Reference 47

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source=pdf_text observed=2026-08-04T11:09:28.722102Z digest=sha256:61928870f284671c42f6b1240f8d4e46ed806b3381167ab0acf9d70f9bba1473

Observation d2f587f6-7a59-4a2e-8c81-cad09fabb1d5 · outbound

This paper cites Second-Generation Time-Delay Interferometry.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Second-Generation Time-Delay Interferometry

Reference 48

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source=pdf_text observed=2026-08-04T11:09:28.940421Z digest=sha256:6c5fc4cb460f73194dcbcde608829096f9b9193d0fade3b05a151f92f38c1a57

Observation c61dbefc-a1aa-45d6-b1b3-36ab0207b438 · outbound

This paper cites Cornish and T.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Cornish and T

Reference 49

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source=pdf_text observed=2026-08-04T11:09:29.119388Z digest=sha256:4620cb4bd41981657dfdcd1e0fdefd37347ad9cf252b09103c9e99dba46b6da4

Observation 6c951a3e-98be-44a2-974a-dc4fa1500ec9 · outbound

This paper cites Exploring short gamma-ray bursts as gravitational-wave standard sirens.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Exploring short gamma-ray bursts as gravitational-wave standard sirens

Reference 50

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source=pdf_text observed=2026-08-04T11:09:29.244758Z digest=sha256:3ca3343e43e068cf2f8c542d7c865026bc20df4a77f23c1faa3fde3c758df3e4

Observation e3248ff9-dad2-47f4-bbca-8037e22fea89 · outbound

This paper cites Beyond Fisher: exact sampling distributions of the maximum-likelihood estimator in gravitational-wave parameter estimation.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Beyond Fisher: exact sampling distributions of the maximum-likelihood estimator in gravitational-wave parameter estimation

Reference 51

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source=pdf_text observed=2026-08-04T11:09:29.322659Z digest=sha256:c685b7fb6405cafdc0b573f53a5457cba09e90026c7dea1116a9c7b62e1b95aa

Observation 1e229958-77cd-41a6-a193-5714cf885bbd · outbound

This paper cites A Fourier Domain Waveform for Non-Spinning Binaries with Arbitrary Eccentricity.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals A Fourier Domain Waveform for Non-Spinning Binaries with Arbitrary Eccentricity

Reference 52

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source=pdf_text observed=2026-08-04T11:09:29.447559Z digest=sha256:68cadba206303839f63df773bb48b212f7d93d02b82cf000120258c46c25c6f0

Observation e616309c-a598-48c4-ae6e-f28cfa1a9233 · outbound

This paper cites Gravitational Waves from Mergin Compact Binaries: How Accurately Can One Extract the Binary's Parameters from the Inspiral Waveform?.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Gravitational Waves from Mergin Compact Binaries: How Accurately Can One Extract the Binary's Parameters from the Inspiral Waveform?

Reference 53

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source=pdf_text observed=2026-08-04T11:09:29.530341Z digest=sha256:8144d4d849f5515c2be278fef28cd187b72d6ee0df0391414251593b98dea832

Observation a5d5b2ed-f59a-4840-aa80-d0fc42c3d1fa · outbound

This paper cites Degeneracy between mass and spin in black-hole-binary waveforms.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Degeneracy between mass and spin in black-hole-binary waveforms

Reference 54

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source=pdf_text observed=2026-08-04T11:09:29.649142Z digest=sha256:ba814fe83b5fb5dd5a6b2ff29b5ec6abf148f944f32b3d4ea85d1d63dda8154b

Observation d9d18c0e-9fc5-4af9-8bc2-48185972f5c3 · outbound

This paper cites Indistinguishability criterion and estimating the presence of biases.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Indistinguishability criterion and estimating the presence of biases

Reference 55

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source=pdf_text observed=2026-08-04T11:09:29.768754Z digest=sha256:32c54d5f4cc65c84e5ab69c2bf134d5b705d6da683b585c51e4318c7c6215e49

Observation 42be6376-1795-4732-b421-cd0d69abd2fa · outbound

This paper cites Measuring gravitational waves from binary black hole coalescences: II. the waves' information and its extraction, with and without templates.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Measuring gravitational waves from binary black hole coalescences: II. the waves' information and its extraction, with and without templates

Reference 56

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Observation badbe8f9-f18f-4294-82b2-fadeb4156dfc · outbound

This paper cites Model Waveform Accuracy Standards for Gravitational Wave Data Analysis.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Model Waveform Accuracy Standards for Gravitational Wave Data Analysis

Reference 57

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source=pdf_text observed=2026-08-04T11:09:29.953744Z digest=sha256:0cfea752a51e5c56be1e833391b91bc909279a34eb83712140377a8bed3cb444

Observation b0d8bb77-921c-4677-ae1d-42e81cc29370 · outbound

This paper cites Constructing Gravitational Waves from Generic Spin-Precessing Compact Binary Inspirals.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Constructing Gravitational Waves from Generic Spin-Precessing Compact Binary Inspirals

Reference 58

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source=pdf_text observed=2026-08-04T11:09:30.038678Z digest=sha256:42be1a06208c8cb94cd29ac7c0d36746a32ec9737d8aa263e96e7dbc35ed671a

Observation 38baa4f7-b7ce-4ce5-a261-b00933d78e0d · outbound

This paper cites Systematic biases due to waveform mismodeling in parametrized post-Einsteinian tests of general relativity: The impact of neglecting spin precession and higher modes.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Systematic biases due to waveform mismodeling in parametrized post-Einsteinian tests of general relativity: The impact of neglecting spin precession and higher modes

Reference 59

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source=pdf_text observed=2026-08-04T11:09:30.139776Z digest=sha256:3646c130feea1b86bdea82dd136f268abd32b740329233263ccdcb506b48f3ca

Observation a6bf094f-a528-42a7-a6ff-9a1e998b8996 · outbound

This paper cites Global Analysis of the Gravitational Wave Signal from Galactic Binaries.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Global Analysis of the Gravitational Wave Signal from Galactic Binaries

Reference 60

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source=pdf_text observed=2026-08-04T11:09:30.236850Z digest=sha256:c521ee9f07e31b3b388b8e93168478256b96d85f92d854dfa23ca015c2ed767f

Observation d5ed2cf0-0c0b-46b5-86cd-43e5ad212a7a · outbound

This paper cites The LISA Data Challenge Radler Analysis and Time-dependent Ultra-compact Binary Catalogues.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals The LISA Data Challenge Radler Analysis and Time-dependent Ultra-compact Binary Catalogues

Reference 61

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Observation 92da8eea-fb60-4b0b-8cd1-fa6b203a7492 · outbound

This paper cites Prototype Global Analysis of LISA Data with Multiple Source Types.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Prototype Global Analysis of LISA Data with Multiple Source Types

Reference 62

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Observation d5c787ec-2c6d-475e-9c77-b526c2b140d4 · outbound

This paper cites Modular global-fit pipeline for LISA data analysis.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Modular global-fit pipeline for LISA data analysis

Reference 63

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source=pdf_text observed=2026-08-04T11:09:30.503167Z digest=sha256:a89084c42adac10b02fd2ee9114096a1cc2e2ff417651503ba4873a6cb548b92

Observation ac9ca01c-6fda-43f5-a2e2-4cae59109951 · outbound

This paper cites Global Analysis of LISA Data with Galactic Binaries and Massive Black Hole Binaries.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Global Analysis of LISA Data with Galactic Binaries and Massive Black Hole Binaries

Reference 64

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source=pdf_text observed=2026-08-04T11:09:30.556168Z digest=sha256:cc26d513c42ece6ba1f5e07297b9d2f811306014a39593f84e882afb2ba54938

Observation 2abe45be-968b-421f-95c2-8eb675e2c92b · outbound

This paper cites An efficient GPU-accelerated multi-source global fit pipeline for LISA data analysis.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals An efficient GPU-accelerated multi-source global fit pipeline for LISA data analysis

Reference 65

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source=pdf_text observed=2026-08-04T11:09:30.633456Z digest=sha256:864d0610605e3978a8128fbb6adbdd381e5e8f387f5796e5a659735c195a38a0

Observation 36841c69-1803-40af-b673-c0926c105f88 · outbound

This paper cites Khukhlaev and S.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Khukhlaev and S

Reference 66

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Observation f4cee811-e8ca-43ec-a959-51b742766bca · outbound

This paper cites Waveform uncertainty quantification and interpretation for gravitational-wave astronomy.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Waveform uncertainty quantification and interpretation for gravitational-wave astronomy

Reference 67

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Observation e988a722-678a-48bc-8140-6850be3bd253 · outbound

This paper cites Waveform accuracy and systematic uncertainties in current gravitational wave observations.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Waveform accuracy and systematic uncertainties in current gravitational wave observations

Reference 68

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Observation a949a69b-939e-4b4a-b4a5-4ef19b984e32 · outbound

This paper cites Kumar, M.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Kumar, M

Reference 69

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source=pdf_text observed=2026-08-04T11:09:31.038093Z digest=sha256:8c6913ee9d481e1677ec02a6eaae90bb9b7e62d147724d85f358c59cae2b732a

Observation 7ac5ac59-bd29-4909-9b05-89b3c552b8b0 · outbound

This paper cites Inferring additional physics through unmodelled signal reconstructions.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Inferring additional physics through unmodelled signal reconstructions

Reference 70

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Observation b33d09f3-9df9-4799-b811-2b0a8c0787b8 · outbound

This paper cites Residual test to search for microlensing signatures in strongly lensed gravitational wave signals.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Residual test to search for microlensing signatures in strongly lensed gravitational wave signals

Reference 71

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Observation e10730d1-0f48-4cdb-9b47-eeebffc63ba6 · outbound

This paper cites Testing general relativity with gravitational waves: a reality check.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Testing general relativity with gravitational waves: a reality check

Reference 72

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Observation a2947768-16f6-4f5a-bade-bb394265ee75 · outbound

This paper cites Antonelli, O.

When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals Antonelli, O

Reference 73

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Pith citing papers

Observation df8b32e5-251e-4e6d-b744-2d60186af98c · inbound

The Impact of Spin Priors on Parameterized Tests of General Relativity cites this paper.

The Impact of Spin Priors on Parameterized Tests of General Relativity When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals

Reference 48

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arxiv_id, observed 2026-07-14T02:20:18.910674Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.

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Quadrupolar tidal effects destroy the integrability of black hole geodesics: analytic proof and numerical evidence of chaos cites this paper.

Quadrupolar tidal effects destroy the integrability of black hole geodesics: analytic proof and numerical evidence of chaos When vacuum breaks: a self-consistency test for astrophysical environments in extreme mass ratio inspirals

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source=pdf_text observed=2026-07-30T11:32:37.910563Z digest=sha256:1fce26364129bd3403bd6295732920bef8eba150f34e1096678f1c5ee7e03d02