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Paper Citation Record · LEDGER

First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

As of 19 August 2026, this Paper Citation Record lists 0 of 0 outbound references and 20 inbound Pith citation observations for arXiv:2307.04239.

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pith.paper-citation-record.v1
2307.04239 v2

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measured 20 of 20 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-19T06:32:44.657259+00:00

measured 20 of 20 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-15T20:02:43.064082Z

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

Source: arxiv_reference, observed 2026-07-03T02:07:33.343288Z

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Pith citing papers

Observation 5d16dc59-6a65-488a-9934-55272b966f61 · inbound

Pre-Big-Bang Cosmology Cannot Explain NANOGrav 15-year Signal cites this paper.

Pre-Big-Bang Cosmology Cannot Explain NANOGrav 15-year Signal First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 58

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Observation b5feed1f-9fed-4c13-b4ae-5b73fd87dc28 · inbound

Primordial Black Holes (as Dark Matter) from the Supercooled Phase Transitions with Radiative Symmetry Breaking cites this paper.

Primordial Black Holes (as Dark Matter) from the Supercooled Phase Transitions with Radiative Symmetry Breaking First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 21

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Observation f290bd89-43b9-45c7-b1d7-237e227d03dc · inbound

Supercooled phase transitions in conformal dark sectors explain NANOGrav data cites this paper.

Supercooled phase transitions in conformal dark sectors explain NANOGrav data First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 10

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Observation 7a44074f-42fd-45ce-a597-21dc448f9f3d · inbound

Primordial Black Hole Formation via Inverted Bubble Collapse cites this paper.

Primordial Black Hole Formation via Inverted Bubble Collapse First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 48

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Observation e9cbcf5e-41f8-4fbb-b6fc-7f8237e4d938 · inbound

Numerical simulations of density perturbation and gravitational wave production from cosmological first-order phase transition cites this paper.

Numerical simulations of density perturbation and gravitational wave production from cosmological first-order phase transition First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 92

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arxiv_id, observed 2026-05-23T02:35:19.384599Z

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Observation 00f9c7db-993a-41ee-8ae0-251667266f7d · inbound

Curvature Perturbations from First-Order Phase Transitions: Implications to Black Holes and Gravitational Waves cites this paper.

Curvature Perturbations from First-Order Phase Transitions: Implications to Black Holes and Gravitational Waves First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 15

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arxiv_id, observed 2026-05-23T01:22:20.852557Z

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Observation c77272ae-d3f7-4e75-9c06-7a1aa5476314 · 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 First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 28

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Observation fddfb8fa-b3ba-4192-a683-be2620d98c29 · inbound

Thermodynamical uncertainties for primordial black holes from cosmological phase transitions cites this paper.

Thermodynamical uncertainties for primordial black holes from cosmological phase transitions First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 65

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arxiv_id, observed 2026-05-25T08:40:32.437148Z

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Observation b708b911-1492-40a6-a88c-49a5181b261c · inbound

QCD Axion Domain Walls from Super-Cooling First Order Phase Transition cites this paper.

QCD Axion Domain Walls from Super-Cooling First Order Phase Transition First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 28

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Observation a3da7c26-4429-4472-b724-ce4b52193f87 · inbound

From new physics to a running power law and back again: Minimal refitting techniques for the reconstruction of the gravitational-wave background signal in pulsar timing array data cites this paper.

From new physics to a running power law and back again: Minimal refitting techniques for the reconstruction of the gravitational-wave background signal in pulsar timing array data First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 44

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Observation 56f4b1a8-84d9-4246-afb7-f992f835b5bd · inbound

Implications for Pulsar Timing Arrays of Sub-solar Black Hole Detections: From LVK to Einstein Telescope and Cosmic Explorer cites this paper.

Implications for Pulsar Timing Arrays of Sub-solar Black Hole Detections: From LVK to Einstein Telescope and Cosmic Explorer First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 81

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Observation 7f9e18ec-8023-41c4-9250-fb4ebb2202b2 · inbound

NANOGrav 15-year gravitational-wave signals from binary supermassive black-holes seeded by primordial black holes, and implications for the origins of Little Red Dots cites this paper.

NANOGrav 15-year gravitational-wave signals from binary supermassive black-holes seeded by primordial black holes, and implications for the origins of Little Red Dots First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 49

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Observation e3b9f16c-4e5b-4cc1-be38-f8932113b717 · inbound

Supercooled Phase Transitions with Radiative Symmetry Breaking cites this paper.

Supercooled Phase Transitions with Radiative Symmetry Breaking First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 18

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Observation 34d1fc58-7c21-4563-ba39-881a16ae9996 · inbound

Neutron Portal and Dark Matter-Baryon Coincidence: from UV Completion to Phenomenology cites this paper.

Neutron Portal and Dark Matter-Baryon Coincidence: from UV Completion to Phenomenology First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 19

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arxiv_id, observed 2026-05-09T22:49:16.351456Z

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Observation fb6807b3-d5a2-47a6-bb67-0f234ffe8c17 · inbound

Constraints on the inflationary vacuum and reheating era from NANOGrav cites this paper.

Constraints on the inflationary vacuum and reheating era from NANOGrav First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 18

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Observation 90b6c432-fe49-41b7-af70-2a2fddedd315 · inbound

Gravitational Waves from Black Hole Reheating: The Scalar-Induced Component cites this paper.

Gravitational Waves from Black Hole Reheating: The Scalar-Induced Component First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 81

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Observation 1f8af50c-4415-4e0f-965c-82411215e536 · inbound

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

Primordial black holes spin from cosmological first-order phase transitions First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 43

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arxiv_id, observed 2026-07-02T00:06:24.762480Z

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Observation 9a9312b3-83b9-4fb4-af60-709970e27517 · inbound

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

Primordial black holes spin from cosmological first-order phase transitions First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 37

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arxiv_id, observed 2026-06-30T11:04:37.452407Z

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Observation 8c094d9f-501c-4e37-b234-c01d491fb055 · inbound

Primordial Black Holes from Slow Phase Transitions with Delayed Reheating: A Peak-Theory Approach cites this paper.

Primordial Black Holes from Slow Phase Transitions with Delayed Reheating: A Peak-Theory Approach First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 17

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arxiv_id, observed 2026-07-03T02:07:33.345669Z

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Observation b457e20a-5a6a-4355-bb32-2dc7cf2cedb8 · inbound

Can the universe be matter-dominated after a supercooled first-order phase transition? cites this paper.

Can the universe be matter-dominated after a supercooled first-order phase transition? First-order Phase Transition interpretation of PTA signal produces solar-mass Black Holes

Reference 65

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