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Paper Citation Record · LEDGER

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors

As of 21 August 2026, this Paper Citation Record lists 63 of 63 outbound references and 1 inbound Pith citation observation for arXiv:2603.21762.

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

pith.paper-citation-record.v1
2603.21762 v2

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measured 63 of 63 reference resolution

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Pith citing papers itemized under the disclosed page cap.

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Outbound references

Observation 0f42f59b-754f-40ba-9cb6-ff5bd1ef3614 · outbound

This paper cites Detection of Early-Universe Gravitational Wave Signatures and Fundamental Physics.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Detection of Early-Universe Gravitational Wave Signatures and Fundamental Physics

Reference 1

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Observation d704a2b4-c70d-46d3-ba47-1c42ddc8e162 · outbound

This paper cites Using gravitational waves to see the first second of the Universe.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Using gravitational waves to see the first second of the Universe

Reference 2

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Observation 9cfbcafc-0af9-491c-9eb4-78d5be41b0c9 · outbound

This paper cites Stochastic Gravitational Wave Backgrounds.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Stochastic Gravitational Wave Backgrounds

Reference 3

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Observation 12cae9d6-99d7-4e2e-9879-5d9059b740be · outbound

This paper cites Cosmological Backgrounds of Gravitational Waves.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Cosmological Backgrounds of Gravitational Waves

Reference 4

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Observation 88ae7d9c-54ce-41b0-96c6-c0a67da383c9 · outbound

This paper cites Gravitational Radiation from Colliding Vacuum Bubbles: Envelope Approximation to Many-Bubble Collisions.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Gravitational Radiation from Colliding Vacuum Bubbles: Envelope Approximation to Many-Bubble Collisions

Reference 5

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Observation e5f57d28-fc37-4ba2-9f3d-103f85e92903 · outbound

This paper cites A stochastic background of gravitational waves from hybrid preheating.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors A stochastic background of gravitational waves from hybrid preheating

Reference 6

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Observation 9d3964d8-4122-49f3-ab9c-9ad359a76907 · outbound

This paper cites LiGong, P.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors LiGong, P

Reference 7

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Observation d8ed5e92-7cbc-4205-ade6-d910b84790da · outbound

This paper cites The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background

Reference 8

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This paper cites The NANOGrav 15-year Data Set: Observations and Timing of 68 Millisecond Pulsars.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors The NANOGrav 15-year Data Set: Observations and Timing of 68 Millisecond Pulsars

Reference 9

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This paper cites The second data release from the European Pulsar Timing Array I. The dataset and timing analysis.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors The second data release from the European Pulsar Timing Array I. The dataset and timing analysis

Reference 10

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Observation 113f75b9-372c-49a5-a070-a6be214ac04b · outbound

This paper cites Can supercooled phase transitions explain the gravitational wave background observed by pulsar timing arrays?.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Can supercooled phase transitions explain the gravitational wave background observed by pulsar timing arrays?

Reference 11

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Observation 850cd569-24a0-41f1-a4a3-7c7a80681114 · outbound

This paper cites All-sky search for long-duration gravitational wave transients in the first Advanced LIGO observing run.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors All-sky search for long-duration gravitational wave transients in the first Advanced LIGO observing run

Reference 12

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Observation 66a4dc25-821a-416d-92ed-3d5c34f103f8 · outbound

This paper cites Optimized Search for a Binary Black Hole Merger Population in LIGO-Virgo O3 Data.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Optimized Search for a Binary Black Hole Merger Population in LIGO-Virgo O3 Data

Reference 13

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Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Unresolved cited work

Reference 14

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This paper cites Upper Limits on the Isotropic Gravitational-Wave Background from the first part of LIGO, Virgo, and KAGRA's fourth Observing Run.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Upper Limits on the Isotropic Gravitational-Wave Background from the first part of LIGO, Virgo, and KAGRA's fourth Observing Run

Reference 15

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Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Unresolved cited work

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This paper cites Laser Interferometer Space Antenna.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Laser Interferometer Space Antenna

Reference 17

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Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors The construction and use of LISA sensitivity curves

Reference 18

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Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Cosmology with the Laser Interferometer Space Antenna

Reference 19

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Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Hu and Y .-L

Reference 20

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This paper cites Taiji Program: Gravitational-Wave Sources.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Taiji Program: Gravitational-Wave Sources

Reference 21

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Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Hyperunified field theory and Taiji program in space for GWD

Reference 22

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Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors TianQin: a space-borne gravitational wave detector

Reference 23

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Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Unresolved cited work

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Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors The First Round Result from the TianQin-1 Satellite

Reference 25

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This paper cites Gravitational waves from a first order electroweak phase transition: a brief review.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Gravitational waves from a first order electroweak phase transition: a brief review

Reference 26

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Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Cosmic phase transitions: their applications and experimental signatures

Reference 27

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This paper cites Detecting gravitational waves from cosmological phase transitions with LISA: an update.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Detecting gravitational waves from cosmological phase transitions with LISA: an update

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Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors The Gravitational-Wave Physics II: Progress

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This paper cites Cosmological phase transitions: from perturbative particle physics to gravitational waves.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Cosmological phase transitions: from perturbative particle physics to gravitational waves

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This paper cites A unique gravitational wave signal from phase transition during inflation.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors A unique gravitational wave signal from phase transition during inflation

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This paper cites Gravitational Waves from an Inflation Triggered First-Order Phase Transition.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Gravitational Waves from an Inflation Triggered First-Order Phase Transition

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This paper cites Gravitational Waves Produced by Domain Walls During Inflation.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Gravitational Waves Produced by Domain Walls During Inflation

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Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Unresolved cited work

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This paper cites Reconstructing the spectral shape of a stochastic gravitational wave background with LISA.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Reconstructing the spectral shape of a stochastic gravitational wave background with LISA

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This paper cites Spectral separation of the stochastic gravitational-wave background for LISA: observing both cosmological and astrophysical backgrounds.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Spectral separation of the stochastic gravitational-wave background for LISA: observing both cosmological and astrophysical backgrounds

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This paper cites Spectral separation of the stochastic gravitational-wave background for LISA in the context of a modulated Galactic foreground.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Spectral separation of the stochastic gravitational-wave background for LISA in the context of a modulated Galactic foreground

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Observation 03550108-adfc-4bbf-9ddb-a6ffd537b08b · outbound

This paper cites Gravitational waves from first-order phase transitions in LISA: reconstruction pipeline and physics interpretation.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Gravitational waves from first-order phase transitions in LISA: reconstruction pipeline and physics interpretation

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source=pdf_text observed=2026-08-02T17:45:19.403184Z digest=sha256:5d081783b797c444ee81d3b1d37cee54e58e26a0cc74b085ae9929f54b1e277c

Observation 6f730f8a-488e-40de-8b31-b40188771b36 · outbound

This paper cites Measuring the primordial gravitational-wave background in the presence of astrophysical foregrounds.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Measuring the primordial gravitational-wave background in the presence of astrophysical foregrounds

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source=pdf_text observed=2026-08-02T17:45:19.406341Z digest=sha256:b1c1d5ccf5ed08e03fdd836219ac3031fbbb02093ca174f1fb8e32e81fc99413

Observation 39c46489-4153-41df-ab75-0b9387f504f8 · outbound

This paper cites Tinto and S.V.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Tinto and S.V

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source=pdf_text observed=2026-08-02T17:45:19.409650Z digest=sha256:ba7848c198baea9061962a406c63f2914d1399d8f9415887a2b72837e77a6fa5

Observation a721cf67-eef8-4572-b136-c86194c76dc4 · outbound

This paper cites LISA for Cosmologists: Calculating the Signal-to-Noise Ratio for Stochastic and Deterministic Sources.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors LISA for Cosmologists: Calculating the Signal-to-Noise Ratio for Stochastic and Deterministic Sources

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source=pdf_text observed=2026-08-02T17:45:19.412677Z digest=sha256:2dfc365abcc0a6a845b085c85d0bba45d22e192fe3c46d10bc9ed63c229ed61c

Observation f219ca33-18f5-4d54-a572-04a5a1ecb61a · outbound

This paper cites Discriminating between a Stochastic Gravitational Wave Background and Instrument Noise.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Discriminating between a Stochastic Gravitational Wave Background and Instrument Noise

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source=pdf_text observed=2026-08-02T17:45:19.415833Z digest=sha256:33c2101feacf7af8a33a498b65d8ebe96380a60f4c00096dcc8a47c2e6f0ebbf

Observation 96d4d2c2-ec55-4a55-8585-027dc75debb4 · outbound

This paper cites Detecting a stochastic background of gravitational radiation: Signal processing strategies and sensitivities.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Detecting a stochastic background of gravitational radiation: Signal processing strategies and sensitivities

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source=pdf_text observed=2026-08-02T17:45:19.419328Z digest=sha256:ed5d77b11d29dda3c87bb2ed5f653b504592185a61e3213c344bd65d8064385e

Observation 2476cf14-add5-4422-a5ba-56457188545d · outbound

This paper cites Observational prospects for phase transitions at LISA: Fisher matrix analysis.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Observational prospects for phase transitions at LISA: Fisher matrix analysis

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source=pdf_text observed=2026-08-02T17:45:19.422515Z digest=sha256:1d1c0310337bdfba4dcfe25857cb8f4fa00731edd6db8d5a7a4d4393de835522

Observation f8ddac9b-4db6-4029-90e3-7ffb818e8e07 · outbound

This paper cites Reconstructing physical parameters from template gravitational wave spectra at LISA: first order phase transitions.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Reconstructing physical parameters from template gravitational wave spectra at LISA: first order phase transitions

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source=pdf_text observed=2026-08-02T17:45:19.425735Z digest=sha256:7bd797600a37d43764637a4bcb60e7b0e4c580fd9eaec43deb7666093dcb350e

Observation 9d1746bc-23dd-4a1a-9f7a-e3e864347e8f · outbound

This paper cites Prospects for LISA to detect a gravitational-wave background from first order phase transitions.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Prospects for LISA to detect a gravitational-wave background from first order phase transitions

Reference 46

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source=pdf_text observed=2026-08-02T17:45:19.428948Z digest=sha256:d1c0e74b5acb2754a5737fa60cabbacf0aac2b41225d42f54f26c6e22b5eadf8

Observation 2f9fe5e7-e045-41ad-b086-e17b057ffb1e · outbound

This paper cites Impact of theoretical uncertainties on model parameter reconstruction from GW signals sourced by cosmological phase transitions.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Impact of theoretical uncertainties on model parameter reconstruction from GW signals sourced by cosmological phase transitions

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source=pdf_text observed=2026-08-02T17:45:19.432321Z digest=sha256:6580dc428efc843ecdf58fbe57b6cd84696a7909ab7701979c6844fa5aa9b002

Observation e0ef6cc5-2fc2-4136-8fe2-2b7b1df2bb2d · outbound

This paper cites Detecting Cosmological Phase Transitions with Taiji: Sensitivity Analysis and Parameter Estimation.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Detecting Cosmological Phase Transitions with Taiji: Sensitivity Analysis and Parameter Estimation

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source=pdf_text observed=2026-08-02T17:45:19.435575Z digest=sha256:9bcdf657dc9703902d7ddc75a34f8c55681f981709e10e369a92782f766a2fae

Observation a176d7b6-9348-41a3-9dbb-4cdbfce23102 · outbound

This paper cites Detection methods for stochastic gravitational-wave backgrounds: a unified treatment.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Detection methods for stochastic gravitational-wave backgrounds: a unified treatment

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source=pdf_text observed=2026-08-02T17:45:19.438933Z digest=sha256:bf7067c98e907a83cf5cc31c2ea3217b6b7792dd60d7d4e8e974eabb94849f49

Observation 44f37d08-92c2-4b1d-ba7f-77ce7a0416b0 · outbound

This paper cites Parameter Estimation of Gravitational Waves from Nonprecessing BH-NS Inspirals with higher harmonics: Comparing MCMC posteriors to an Effective Fisher Matrix.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Parameter Estimation of Gravitational Waves from Nonprecessing BH-NS Inspirals with higher harmonics: Comparing MCMC posteriors to an Effective Fisher Matrix

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source=pdf_text observed=2026-08-02T17:45:19.442190Z digest=sha256:adf1ba783557c10e5f6c7ad8d8660890c06e41199dee8470d792442cf7a7a403

Observation 05cc306b-2e8a-456f-9fd3-20fca2552db1 · outbound

This paper cites Fisher vs. Bayes : A comparison of parameter estimation techniques for massive black hole binaries to high redshifts with eLISA.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Fisher vs. Bayes : A comparison of parameter estimation techniques for massive black hole binaries to high redshifts with eLISA

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source=pdf_text observed=2026-08-02T17:45:19.445422Z digest=sha256:73e843e0aa905d0534a1bc7122439c8224cf776ac886e62fd78399d6bc1f6bf0

Observation 9081d535-1384-4cd5-8075-b4e11224c9e1 · outbound

This paper cites Measuring gravitational wave spectrum from electroweak phase transition and Higgs self-couplings.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Measuring gravitational wave spectrum from electroweak phase transition and Higgs self-couplings

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source=pdf_text observed=2026-08-02T17:45:19.448459Z digest=sha256:b19be20b94659cc1e010165e49d6b301ea31f4ea33366b3e7ad8a01bb5395c5a

Observation 7a8ec0f6-3d67-47d5-b38d-c82536335285 · outbound

This paper cites Bayesian analysis of the complex singlet model with phase transition gravitational waves.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Bayesian analysis of the complex singlet model with phase transition gravitational waves

Reference 53

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source=pdf_text observed=2026-08-02T17:45:19.451764Z digest=sha256:8941bb983a4c66fdfaa76d843dcf2cbf454c21509afa17bd6958d2def3bb3ca6

Observation a70a1639-82d2-4f85-9e1d-65052c25eea8 · outbound

This paper cites Guth,The Inflationary Universe: A Possible Solution to the Horizon and Flatness Problems,Phys.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Guth,The Inflationary Universe: A Possible Solution to the Horizon and Flatness Problems,Phys

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Observation 131104e2-af62-4cf1-8786-d6d062d4ce50 · outbound

This paper cites Linde,A New Inflationary Universe Scenario: A Possible Solution of the Horizon, Flatness, Homogeneity, Isotropy and Primordial Monopole Problems,Phys.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Linde,A New Inflationary Universe Scenario: A Possible Solution of the Horizon, Flatness, Homogeneity, Isotropy and Primordial Monopole Problems,Phys

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Observation 3a786090-a23c-457a-b633-0a67797e189e · outbound

This paper cites Albrecht and P.J.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Albrecht and P.J

Reference 56

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source=pdf_text observed=2026-08-02T17:45:19.461096Z digest=sha256:1db1c59147761fdcb4f955ad8f4747d2e1cc24d561fab211d10647060d9ab85b

Observation 9f83ae9e-71e1-4f7d-9891-f33e61568ad8 · outbound

This paper cites Gravitational Wave Spectrum Induced by Primordial Scalar Perturbations.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Gravitational Wave Spectrum Induced by Primordial Scalar Perturbations

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source=pdf_text observed=2026-08-02T17:45:19.464070Z digest=sha256:9d69d678591e8c94cc84340f5f984f150235fba8f02b1ca8cb4faa5af4dac4b9

Observation 7521d7f4-d583-4524-a56d-4e35b7be462f · outbound

This paper cites Semianalytic Calculation of Gravitational Wave Spectrum Nonlinearly Induced from Primordial Curvature Perturbations.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Semianalytic Calculation of Gravitational Wave Spectrum Nonlinearly Induced from Primordial Curvature Perturbations

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Observation 0892caa6-3d5b-41a2-be10-d2bb25052e8e · outbound

This paper cites Time-Delay Interferometry.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Time-Delay Interferometry

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Observation e1f2b335-f0c6-4220-ba34-a9cd42788435 · outbound

This paper cites Prospects for Taiji to detect a gravitational-wave background from cosmic strings.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Prospects for Taiji to detect a gravitational-wave background from cosmic strings

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source=pdf_text observed=2026-08-02T17:45:19.474010Z digest=sha256:ae6c1b8f707847f714a3c00849e18dda37146d4bb856e0aabaf4539649934450

Observation bfc9ed7f-6e64-4134-a859-387d24b430b1 · outbound

This paper cites Boileau, T.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Boileau, T

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Observation 7debce3c-daa4-4594-b8fc-5530561cd422 · outbound

This paper cites Circularly Polarized Gravitational Wave Background Search with a Network of Space-borne Triangular Detectors.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors Circularly Polarized Gravitational Wave Background Search with a Network of Space-borne Triangular Detectors

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source=pdf_text observed=2026-08-02T17:45:19.480374Z digest=sha256:7b35d2a36728a2df6f23b8b80187645bc72ced098e1bd86660b0b7b4f53b7183

Observation 44fd5770-0394-41b5-b1cf-b3e5e0e7c9bc · outbound

This paper cites GRB 200716C: Evidence for a Short Burst Being Lensed.

Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors GRB 200716C: Evidence for a Short Burst Being Lensed

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Pith citing papers

Observation 0ab06e2c-7f9a-4658-90e4-fb88cf8cd983 · inbound

Full-Covariance Bayesian Inference of Stochastic Gravitational Wave Backgrounds with Time-Domain Simulations for Taiji-like Missions cites this paper.

Full-Covariance Bayesian Inference of Stochastic Gravitational Wave Backgrounds with Time-Domain Simulations for Taiji-like Missions Inflationary phase transitions in the early Universe: A Bayesian study with space-based gravitational-wave detectors

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