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Paper Citation Record · LEDGER

Cosmic phase transitions: their applications and experimental signatures

As of 22 August 2026, this Paper Citation Record lists 0 of 0 outbound references and 36 inbound Pith citation observations for arXiv:1811.01948.

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pith.paper-citation-record.v1
1811.01948 v3

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measured 36 of 36 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-22T06:32:14.747728+00:00

measured 36 of 36 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-16T11:59:56.040480Z

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Source: arxiv_reference, observed 2026-07-03T11:28:03.867896Z

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Pith citing papers

Observation a07238c2-d995-42f3-a721-58d81f9040ae · inbound

Vacuum decays around spinning black holes cites this paper.

Vacuum decays around spinning black holes Cosmic phase transitions: their applications and experimental signatures

Reference 11

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Observation 6ce0ba01-89ec-45a0-8c0c-ce38322defa2 · inbound

Electroweak phase transition with composite Higgs models: calculability, gravitational waves and collider searches cites this paper.

Electroweak phase transition with composite Higgs models: calculability, gravitational waves and collider searches Cosmic phase transitions: their applications and experimental signatures

Reference 26

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Observation ed421e3e-ca0f-4fb4-8255-613198f74930 · inbound

New Sensitivity Curves for Gravitational-Wave Signals from Cosmological Phase Transitions cites this paper.

New Sensitivity Curves for Gravitational-Wave Signals from Cosmological Phase Transitions Cosmic phase transitions: their applications and experimental signatures

Reference 19

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arxiv_id, observed 2026-05-23T22:35:50.004963Z

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Observation a95f89e5-2ef7-4f58-ae7e-b3f36a4370e1 · inbound

Observable CMB B-modes from Cosmological Phase Transitions cites this paper.

Observable CMB B-modes from Cosmological Phase Transitions Cosmic phase transitions: their applications and experimental signatures

Reference 43

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arxiv_id, observed 2026-05-23T18:35:45.807480Z

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Observation 921ec23e-280b-44ee-b68d-52add618d778 · inbound

Prospecting bipartite Dark Matter through Gravitational Waves cites this paper.

Prospecting bipartite Dark Matter through Gravitational Waves Cosmic phase transitions: their applications and experimental signatures

Reference 145

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Observation dbd3de65-678b-450e-b861-338f663d3894 · inbound

False vacuum decay of excited states in finite-time instanton calculus cites this paper.

False vacuum decay of excited states in finite-time instanton calculus Cosmic phase transitions: their applications and experimental signatures

Reference 5

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Observation e7a2ba0a-a9e8-4092-b9fb-f2eaf5410da1 · inbound

Gravitational wave signatures of dark sector portal leptogenesis cites this paper.

Gravitational wave signatures of dark sector portal leptogenesis Cosmic phase transitions: their applications and experimental signatures

Reference 72

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Observation 1057ba91-08e3-4c5b-a27b-d086a4726865 · inbound

Unveiling the inert Triplet desert region with a pNGB Dark Matter and its Gravitational Wave signatures cites this paper.

Unveiling the inert Triplet desert region with a pNGB Dark Matter and its Gravitational Wave signatures Cosmic phase transitions: their applications and experimental signatures

Reference 45

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Observation a04d5b68-6eef-4962-a497-ad60d093fce8 · inbound

The power of SKA to Constrain cosmological gravitational-wave backgrounds below the astrophysical foreground noise cites this paper.

The power of SKA to Constrain cosmological gravitational-wave backgrounds below the astrophysical foreground noise Cosmic phase transitions: their applications and experimental signatures

Reference 86

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Observation c375bb6c-e909-4880-9db0-8fa84d903a22 · inbound

Gamma-Rays and Gravitational Waves from Inelastic Higgs Portal Dark Matter cites this paper.

Gamma-Rays and Gravitational Waves from Inelastic Higgs Portal Dark Matter Cosmic phase transitions: their applications and experimental signatures

Reference 75

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Observation 039a7e45-81ee-49b5-b0b3-68c6aab5779a · inbound

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

Upper Limits on the Isotropic Gravitational-Wave Background from the first part of LIGO, Virgo, and KAGRA's fourth Observing Run Cosmic phase transitions: their applications and experimental signatures

Reference 38

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Observation 69310ff7-b856-4aa1-a96a-5bd8503de7f1 · inbound

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

Measuring gravitational wave spectrum from electroweak phase transition and Higgs self-couplings Cosmic phase transitions: their applications and experimental signatures

Reference 22

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arxiv_id, observed 2026-05-21T19:14:19.190016Z

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No event found in the named queried sources as of 2026-08-22T06:32:14.747728+00:00.

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Observation 32afd7be-dfa2-496e-aacc-42d9bc94e984 · inbound

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

Measuring gravitational wave spectrum from electroweak phase transition and Higgs self-couplings Cosmic phase transitions: their applications and experimental signatures

Reference 22

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Observation 417cba31-2893-4fdc-a3d3-cf8d49abe22d · inbound

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

Bayesian analysis of the complex singlet model with phase transition gravitational waves Cosmic phase transitions: their applications and experimental signatures

Reference 22

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Observation 802df346-8b7b-4528-a945-ccda990071ab · inbound

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

Bayesian analysis of the complex singlet model with phase transition gravitational waves Cosmic phase transitions: their applications and experimental signatures

Reference 22

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Observation 1862c3bd-c6d3-4100-88db-68c72a32cf29 · inbound

Revisiting Singlet Fermion Dark Matter with a Scalar Portal: Connecting Higgs Phenomenology and Strong Electroweak Phase Transition cites this paper.

Revisiting Singlet Fermion Dark Matter with a Scalar Portal: Connecting Higgs Phenomenology and Strong Electroweak Phase Transition Cosmic phase transitions: their applications and experimental signatures

Reference 53

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Observation aa739216-dc4f-4a6b-a6ee-d462b5585164 · inbound

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

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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Observation 4b193d0f-0cc7-4162-bf2a-89c1c8c96ca5 · inbound

Vacuum bubbles from cosmic ripples cites this paper.

Vacuum bubbles from cosmic ripples Cosmic phase transitions: their applications and experimental signatures

Reference 1

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Observation 1825bc21-506c-4d8e-970c-9fc6a261d2bb · inbound

Primordial Magnetogenesis and Gravitational Waves from ALP-assisted Phase Transition cites this paper.

Primordial Magnetogenesis and Gravitational Waves from ALP-assisted Phase Transition Cosmic phase transitions: their applications and experimental signatures

Reference 19

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Observation 6fdcafa3-472f-4f76-95b3-2f880fde04d9 · inbound

Solving Cosmological Puzzles using Finite Temperature $\nu$SMEFT cites this paper.

Solving Cosmological Puzzles using Finite Temperature $\nu$SMEFT Cosmic phase transitions: their applications and experimental signatures

Reference 42

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Observation dd5f320c-72b7-4291-b672-95d9d44e0b5a · inbound

Gravitational Waves from a Black Hole Falling Radially into a Thin-Shell Traversable Wormhole cites this paper.

Gravitational Waves from a Black Hole Falling Radially into a Thin-Shell Traversable Wormhole Cosmic phase transitions: their applications and experimental signatures

Reference 17

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Observation c8b30611-6a11-40b2-bb91-cce71112b96b · inbound

Reviving primordial black hole formation in slow first-order phase transitions cites this paper.

Reviving primordial black hole formation in slow first-order phase transitions Cosmic phase transitions: their applications and experimental signatures

Reference 1

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Observation 15913fc1-8097-462d-b2bb-c5fdeae1e85a · inbound

Reviving primordial black hole formation in slow first-order phase transitions cites this paper.

Reviving primordial black hole formation in slow first-order phase transitions Cosmic phase transitions: their applications and experimental signatures

Reference 1

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Observation 245ca4dc-cbcc-4e3f-940a-54988a19509a · inbound

Self-Consistent Parker Bound on Magnetic Monopoles cites this paper.

Self-Consistent Parker Bound on Magnetic Monopoles Cosmic phase transitions: their applications and experimental signatures

Reference 27

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Observation c61e4c86-5083-4d3d-b8ef-51827891dfef · inbound

Self-Consistent Parker Bound on Magnetic Monopoles cites this paper.

Self-Consistent Parker Bound on Magnetic Monopoles Cosmic phase transitions: their applications and experimental signatures

Reference 27

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Observation cf88dbac-81fe-4930-91c3-b8793f386cbf · inbound

Primordial black holes spin from cosmological first-order phase transitions cites this paper.

Primordial black holes spin from cosmological first-order phase transitions Cosmic phase transitions: their applications and experimental signatures

Reference 1

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Observation a67ea1cd-f42a-4c04-8fba-c567a774a1f2 · inbound

Primordial black holes spin from cosmological first-order phase transitions cites this paper.

Primordial black holes spin from cosmological first-order phase transitions Cosmic phase transitions: their applications and experimental signatures

Reference 1

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arxiv_id, observed 2026-06-30T11:04:37.407452Z

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Observation d9f9f651-916d-47a7-bea0-97c1d52bdc3c · inbound

HydroGrav: Precise hydrodynamics and gravitational waves for cosmological phase transitions cites this paper.

HydroGrav: Precise hydrodynamics and gravitational waves for cosmological phase transitions Cosmic phase transitions: their applications and experimental signatures

Reference 4

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arxiv_id, observed 2026-07-01T16:55:51.605137Z

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Observation 19a81ede-d5c4-4f9b-8c96-163a2d32a9c3 · inbound

Gravitational Waves from Multiple First-Order Phase Transitions in a Scenario with Early Matter Domination cites this paper.

Gravitational Waves from Multiple First-Order Phase Transitions in a Scenario with Early Matter Domination Cosmic phase transitions: their applications and experimental signatures

Reference 86

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Observation 1dac26fb-299e-4810-a111-bc230eac314d · inbound

A Non-Holomorphic Modular $A_4$ Framework for Resonant Leptogenesis with Gravitational Wave Signatures cites this paper.

A Non-Holomorphic Modular $A_4$ Framework for Resonant Leptogenesis with Gravitational Wave Signatures Cosmic phase transitions: their applications and experimental signatures

Reference 72

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Observation c6f6d2b5-3182-40a1-9fdf-dc6149a30194 · inbound

CosmoLattice 2.0 cites this paper.

CosmoLattice 2.0 Cosmic phase transitions: their applications and experimental signatures

Reference 112

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Observation 32e9a327-ea47-441c-ae5e-2e8418f87239 · inbound

CosmoLattice 2.0 cites this paper.

CosmoLattice 2.0 Cosmic phase transitions: their applications and experimental signatures

Reference 138

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Observation 35d3baa2-9b0d-4ade-8f89-9b686fdb78be · inbound

Particle Production via Rippled Bubble Walls cites this paper.

Particle Production via Rippled Bubble Walls Cosmic phase transitions: their applications and experimental signatures

Reference 53

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Observation b60c80d7-d783-4b94-9098-eccf2c733a8d · inbound

Dynamics of nucleation in thermal phase transitions cites this paper.

Dynamics of nucleation in thermal phase transitions Cosmic phase transitions: their applications and experimental signatures

Reference 1

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Observation df65f873-e2bb-4e5a-98fe-dd105a6a9a46 · 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 Cosmic phase transitions: their applications and experimental signatures

Reference 9

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Observation d51460c3-54cf-441f-be82-b3873bc4635e · inbound

Cosmological Vacuum Decays from Schwinger-Keldysh Formalism cites this paper.

Cosmological Vacuum Decays from Schwinger-Keldysh Formalism Cosmic phase transitions: their applications and experimental signatures

Reference 4

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