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Paper Citation Record · LEDGER

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors

As of 19 August 2026, this Paper Citation Record lists 77 of 77 outbound references and 3 inbound Pith citation observations for arXiv:2505.12678.

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

pith.paper-citation-record.v1
2505.12678 v3

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measured 77 of 77 reference resolution

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Source: paper_references, paper_reference_links, observed 2026-08-15T20:35:36.218296Z

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-18T06:34:40.430872+00:00

measured 3 of 3 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-03T06:51:31.121854Z

measured 0 of 1 external citation measurements

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Source: arxiv_reference, observed 2026-05-20T03:03:21.405947Z

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77 of 77 outbound references displayed

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Outbound references

Observation 13e198bc-6565-4b3a-872e-c1673909b86d · outbound

This paper cites Cosmology Intertwined: A Review of the Particle Physics, Astrophysics, and Cosmology Associated with the Cosmological Tensions and Anomalies.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Cosmology Intertwined: A Review of the Particle Physics, Astrophysics, and Cosmology Associated with the Cosmological Tensions and Anomalies

Reference 2

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Observation a06788e8-7fff-4e98-9ed7-5e6f81fa42d8 · outbound

This paper cites Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM

Reference 3

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Observation 286eb505-2ed3-4fd6-974f-63ef32807966 · outbound

This paper cites On cosmic acceleration without dark energy.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors On cosmic acceleration without dark energy

Reference 5

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Observation a82b7145-f4a9-4cd6-b10f-955639256214 · outbound

This paper cites Inhomogeneous cosmology and backreaction: Current status and future prospects.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Inhomogeneous cosmology and backreaction: Current status and future prospects

Reference 6

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Observation ca2f4a5e-efef-4a2a-9d6e-9c78cf1040f0 · outbound

This paper cites A Test of the Cosmological Principle with Quasars.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors A Test of the Cosmological Principle with Quasars

Reference 7

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Observation 4083edf8-903d-4a96-9abd-9bfd835d1c27 · outbound

This paper cites Detection of the velocity dipole in the radio galaxies of the NRAO VLA Sky Survey.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Detection of the velocity dipole in the radio galaxies of the NRAO VLA Sky Survey

Reference 8

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Observation fa129ee1-20d6-442f-a076-5e6773fb0a57 · outbound

This paper cites Large peculiar motion of the solar system from the dipole anisotropy in sky brightness due to distant radio sources.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Large peculiar motion of the solar system from the dipole anisotropy in sky brightness due to distant radio sources

Reference 9

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Observation 4efc91a9-b63b-4de6-a43c-10f5b22d9bbd · outbound

This paper cites Dipoles in the Sky.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Dipoles in the Sky

Reference 10

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Observation 73af1d30-e87f-49c9-981b-87f3bb143c87 · outbound

This paper cites Dipole anisotropy in sky brightness and source count distribution in radio NVSS data.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Dipole anisotropy in sky brightness and source count distribution in radio NVSS data

Reference 11

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Observation 70afa941-1d52-429e-9e6c-66590719eee3 · outbound

This paper cites Searching for a dipole modulation in the large-scale structure of the Universe.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Searching for a dipole modulation in the large-scale structure of the Universe

Reference 12

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Observation 78594b11-6265-4e58-9509-6258244b673a · outbound

This paper cites Dipole Anisotropy in Integrated Linearly Polarized Flux Density in NVSS Data.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Dipole Anisotropy in Integrated Linearly Polarized Flux Density in NVSS Data

Reference 13

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Observation b0411996-28d6-4050-89f3-b435a8840242 · outbound

This paper cites Probing the Cosmological Principle in the counts of radio galaxies at different frequencies.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Probing the Cosmological Principle in the counts of radio galaxies at different frequencies

Reference 14

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Observation 442e3fc9-1214-4749-8359-cfba8ff5c2e8 · outbound

This paper cites The Cosmic Radio Dipole: Estimators and Frequency Dependence.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors The Cosmic Radio Dipole: Estimators and Frequency Dependence

Reference 15

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Observation 7316706a-845c-4160-a1b3-8b834fa7860e · outbound

This paper cites Peculiar motion of Solar system from the Hubble diagram of supernovae Ia and its implications for cosmology.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Peculiar motion of Solar system from the Hubble diagram of supernovae Ia and its implications for cosmology

Reference 16

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Observation abb99160-6a50-4d4e-9007-77e3e2249a08 · outbound

This paper cites Revisiting the NVSS number count dipole.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Revisiting the NVSS number count dipole

Reference 17

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Observation 57d23a86-3c39-48b0-b096-edd42b78780c · outbound

This paper cites High redshift radio galaxies and divergence from the CMB dipole.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors High redshift radio galaxies and divergence from the CMB dipole

Reference 18

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Observation ef5af90a-60cf-4bd6-b6bc-032fc7ab0536 · outbound

This paper cites Impact of local structure on the cosmic radio dipole.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Impact of local structure on the cosmic radio dipole

Reference 19

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Observation b344e109-4410-4a09-8cc0-78960147b65b · outbound

This paper cites On the kinematic cosmic dipole tension.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors On the kinematic cosmic dipole tension

Reference 20

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Observation 8902e8f4-91a9-402d-81b3-7d2012406d49 · outbound

This paper cites The expected kinematic matter dipole is robust against source evolution.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors The expected kinematic matter dipole is robust against source evolution

Reference 21

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Observation 3e5b8089-af7c-466d-91cc-947f9a146ccc · outbound

This paper cites Redshift tomography of the kinematic matter dipole.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Redshift tomography of the kinematic matter dipole

Reference 22

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Observation 23de9da1-47c2-4409-b1d1-86658476f3fa · outbound

This paper cites First constraints on the intrinsic CMB dipole and our velocity with Doppler and aberration.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors First constraints on the intrinsic CMB dipole and our velocity with Doppler and aberration

Reference 23

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Observation fde0fb2a-7e80-457f-bea0-c105ad13c7b0 · outbound

This paper cites Disentangling Doppler modulation, aberration and the temperature dipole in the CMB.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Disentangling Doppler modulation, aberration and the temperature dipole in the CMB

Reference 24

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Observation 09730d78-0b83-408e-bc00-6807027fe8fa · outbound

This paper cites Tomographic redshift dipole: Testing the cosmological principle.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Tomographic redshift dipole: Testing the cosmological principle

Reference 25

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Observation 39be7e81-cea2-4732-ab25-99503360f478 · outbound

This paper cites Determining the hubble constant from gravitational wave observations,.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Determining the hubble constant from gravitational wave observations,

Reference 27

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Observation 996814dc-7328-4b53-a7d7-bbea55410444 · outbound

This paper cites Cosmology with LIGO/Virgo dark sirens: Hubble parameter and modified gravitational wave propagation.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Cosmology with LIGO/Virgo dark sirens: Hubble parameter and modified gravitational wave propagation

Reference 28

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Observation b3fd0f51-e9eb-4f32-8637-86cbc530e233 · outbound

This paper cites Cosmology in the dark: On the importance of source population models for gravitational-wave cosmology.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Cosmology in the dark: On the importance of source population models for gravitational-wave cosmology

Reference 29

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Observation 284fabbf-455e-4fa7-81de-ba7b9c08590b · outbound

This paper cites A novel approach to infer population and cosmological properties with gravitational waves standard sirens and galaxy surveys.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors A novel approach to infer population and cosmological properties with gravitational waves standard sirens and galaxy surveys

Reference 30

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Observation 86f11e8e-8ffa-4fc5-af7d-94d1db4fb54b · outbound

This paper cites ICAROGW: A python package for inference of astrophysical population properties of noisy, heterogeneous and incomplete observations.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors ICAROGW: A python package for inference of astrophysical population properties of noisy, heterogeneous and incomplete observations

Reference 31

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Observation d607acc2-af0f-45ce-aca7-c026d18d90de · outbound

This paper cites Cosmological Inference using Gravitational Wave Standard Sirens: A Mock Data Challenge.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Cosmological Inference using Gravitational Wave Standard Sirens: A Mock Data Challenge

Reference 32

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This paper cites A Pixelated Approach to Galaxy Catalogue Incompleteness: Improving the Dark Siren Measurement of the Hubble Constant.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors A Pixelated Approach to Galaxy Catalogue Incompleteness: Improving the Dark Siren Measurement of the Hubble Constant

Reference 33

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Observation 2c262cb5-e06b-4485-b132-797a9e9ce2b5 · outbound

This paper cites Joint cosmological and gravitational-wave population inference using dark sirens and galaxy catalogues.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Joint cosmological and gravitational-wave population inference using dark sirens and galaxy catalogues

Reference 34

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This paper cites Are stellar--mass binary black hole mergers isotropically distributed?.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Are stellar--mass binary black hole mergers isotropically distributed?

Reference 36

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Observation 19c34f14-81cc-48c1-9840-9f7ac5cfc2f3 · outbound

This paper cites An Isotropy Measurement with Gravitational Wave Observations.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors An Isotropy Measurement with Gravitational Wave Observations

Reference 37

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This paper cites Dipole Anisotropy in Gravitational Wave Source Distribution.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Dipole Anisotropy in Gravitational Wave Source Distribution

Reference 38

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This paper cites The Einstein Telescope: A third-generation gravitational wave observatory,.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors The Einstein Telescope: A third-generation gravitational wave observatory,

Reference 39

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Observation 2931ff22-6606-4745-a2b3-f719d653b8c3 · outbound

This paper cites Science with the Einstein Telescope: a comparison of different designs.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Science with the Einstein Telescope: a comparison of different designs

Reference 40

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source=pdf_text observed=2026-08-15T20:35:36.066814Z digest=sha256:56798e740b02dc935a3b10aca9c7b191b9278c2e5e05311949d11fd2b7b930b1

Observation 3eceedfa-0979-4730-9165-6804ad48a199 · outbound

This paper cites A Horizon Study for Cosmic Explorer: Science, Observatories, and Community.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors A Horizon Study for Cosmic Explorer: Science, Observatories, and Community

Reference 41

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source=pdf_text observed=2026-08-15T20:35:36.070419Z digest=sha256:fd8ce21d523228ebbca955ae2b65f4bf638085a0fe6ec2f4649817ce8244f069

Observation 1c6648c4-456e-4113-8e34-c07eebe5db50 · outbound

This paper cites Science-Driven Tunable Design of Cosmic Explorer Detectors.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Science-Driven Tunable Design of Cosmic Explorer Detectors

Reference 42

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source=pdf_text observed=2026-08-15T20:35:36.074360Z digest=sha256:7c2f89596a24d7515e1803354ddd7ccb13cc35cce3d0d9bcbcbe6d9a5e5d9cbf

Observation 7dcf63e2-1b9f-4a90-b358-1f6948cf69ee · outbound

This paper cites Cosmic Explorer: A Submission to the NSF MPSAC ngGW Subcommittee.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Cosmic Explorer: A Submission to the NSF MPSAC ngGW Subcommittee

Reference 43

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source=pdf_text observed=2026-08-15T20:35:36.077932Z digest=sha256:fe45d306d1cf8e6b379015464722bc79780d5208d4469879bf2a226efc210419

Observation e5fdba7e-b4b0-48fe-9f04-fe5c55af3d53 · outbound

This paper cites Laser Interferometer Space Antenna.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Laser Interferometer Space Antenna

Reference 44

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source=pdf_text observed=2026-08-15T20:35:36.082270Z digest=sha256:9ab0bead9e220ff9e121c48391d81c2015b7d15995c8c92f08e234eee4810f6b

Observation 55383655-dff7-4149-a9d9-b7c0c237e466 · outbound

This paper cites Overview and progress on the Laser Interferometer Space Antenna mission,.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Overview and progress on the Laser Interferometer Space Antenna mission,

Reference 45

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source=pdf_text observed=2026-08-15T20:35:36.085929Z digest=sha256:56b115a05f8cfeb4bd5ee51208438075ec7af29fca6a452b6cdd72396f9b259f

Observation ee011e58-9cfd-4cfa-9630-1ad19dd314d7 · outbound

This paper cites Detection and estimation of the cosmic dipole with the Einstein Telescope and Cosmic Explorer.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Detection and estimation of the cosmic dipole with the Einstein Telescope and Cosmic Explorer

Reference 46

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source=pdf_text observed=2026-08-15T20:35:36.088984Z digest=sha256:904c6aa3277d2aeca5b13781d3a8c23a6c6eddf14d0c83b1bccd4c16bfd2bceb

Observation 1ac34da1-6205-4001-be17-2aef093af171 · outbound

This paper cites Combining chirp mass, luminosity distance and sky localisation from gravitational wave events to detect the cosmic dipole.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Combining chirp mass, luminosity distance and sky localisation from gravitational wave events to detect the cosmic dipole

Reference 47

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source=pdf_text observed=2026-08-15T20:35:36.092380Z digest=sha256:63dd1cb30e2358bcb54a60da23780e171c55ff55b25d2b61681fb6864daa823c

Observation 5d0a736a-d523-4139-ae43-f9b25e259184 · outbound

This paper cites Finding cosmic anisotropy with networks of next-generation gravitational-wave detectors.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Finding cosmic anisotropy with networks of next-generation gravitational-wave detectors

Reference 48

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source=pdf_text observed=2026-08-15T20:35:36.095966Z digest=sha256:259ff2c5660afe874c76d928b8bd47bad5e32ed941f2124b9aa6b48f8eb923fa

Observation ae2ca8dc-01a2-436d-aa7c-c01b88ce426e · outbound

This paper cites Probing cosmic anisotropy with gravitational waves as standard sirens.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Probing cosmic anisotropy with gravitational waves as standard sirens

Reference 49

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source=pdf_text observed=2026-08-15T20:35:36.099712Z digest=sha256:12bfaab87bbec30d1e71906cb75dd82d98a554e39bd8f1e8173771d4de8a53e2

Observation ca66325a-247f-4fa6-a595-93151e8e9231 · outbound

This paper cites Probing cosmic anisotropy with GW/FRB as upgraded standard sirens.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Probing cosmic anisotropy with GW/FRB as upgraded standard sirens

Reference 50

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source=pdf_text observed=2026-08-15T20:35:36.104459Z digest=sha256:166fa3dde037f98609022fb4cb4554d500c1b85115c0c091df58f9f82596dfc4

Observation 9c9f3c5d-ca44-4fbb-9316-cbd45e60dc5c · outbound

This paper cites Doppler boosting the stochastic gravitational wave background.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Doppler boosting the stochastic gravitational wave background

Reference 51

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source=pdf_text observed=2026-08-15T20:35:36.107890Z digest=sha256:cfc7c2fe16bc03f77ec2186d9fedabdba169f06b716b4ac399934155a0d00b91

Observation dea7f35b-46fc-40ef-8cde-3c761960c7c5 · outbound

This paper cites Kinematic anisotropies and pulsar timing arrays.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Kinematic anisotropies and pulsar timing arrays

Reference 52

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source=pdf_text observed=2026-08-15T20:35:36.111372Z digest=sha256:8b217158dc54e2006ee382c2380d4a5cbd4533ca57f2c1f65748b2518771721a

Observation d0cabf33-3024-4507-b053-38194fdb6712 · outbound

This paper cites Measuring kinematic anisotropies with pulsar timing arrays,.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Measuring kinematic anisotropies with pulsar timing arrays,

Reference 53

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source=pdf_text observed=2026-08-15T20:35:36.115342Z digest=sha256:bad3d499009940abbac9f272cf131716c9e9c2df7e8585652e0c38bd6a3b219d

Observation 550146c3-17e9-44a7-ae70-d64461b58922 · outbound

This paper cites Astrometry meets Pulsar Timing Arrays: Synergies for Gravitational Wave Detection,.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Astrometry meets Pulsar Timing Arrays: Synergies for Gravitational Wave Detection,

Reference 54

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source=pdf_text observed=2026-08-15T20:35:36.119160Z digest=sha256:aacaf548e3f1ab63371cb71d0f6195e2e5702f8b6ce6cb7fb6db9af9fa356b78

Observation d3617f2c-2a93-4e62-be73-26d8fbb99768 · outbound

This paper cites Going the Distance: Mapping Host Galaxies of LIGO and Virgo Sources in Three Dimensions Using Local Cosmography and Targeted Follow-up.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Going the Distance: Mapping Host Galaxies of LIGO and Virgo Sources in Three Dimensions Using Local Cosmography and Targeted Follow-up

Reference 55

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source=pdf_text observed=2026-08-15T20:35:36.123146Z digest=sha256:928186351796053efa405748660c9df8a02e9ba884a482f15fc2dbf31926f265

Observation 8f2e7be4-8d27-4ac3-a02f-0b9464afea3f · outbound

This paper cites Measurement of Hubble constant with stellar-mass binary black holes.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Measurement of Hubble constant with stellar-mass binary black holes

Reference 56

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source=pdf_text observed=2026-08-15T20:35:36.126430Z digest=sha256:76823e3730b34c75145cd0c54289c8f57bc9f0aef613059acf62f9e1dd622a0f

Observation 696de75b-4fcb-49d7-a256-abaf23ce8928 · outbound

This paper cites Hunting for the host galaxy groups of binary black holes and the application in constraining Hubble constant.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Hunting for the host galaxy groups of binary black holes and the application in constraining Hubble constant

Reference 57

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source=pdf_text observed=2026-08-15T20:35:36.130657Z digest=sha256:581b2af1e1187ad7f3e7ebed773b84dc9e4affec6a0613015e2c22924f4253ac

Observation 5a3944a7-d7ac-4ffd-8f99-1d6112533363 · outbound

This paper cites Dark Sirens to Resolve the Hubble-Lema\^itre Tension.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Dark Sirens to Resolve the Hubble-Lema\^itre Tension

Reference 58

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source=pdf_text observed=2026-08-15T20:35:36.134969Z digest=sha256:2c0a4ba9a5974194f841e1806f93c8a4f6cab11e3821fae6d1db58e3b9d1d1cf

Observation ba397fc3-6394-45d8-b8be-10a329fe14da · outbound

This paper cites Using Gray Sirens to Resolve the Hubble-Lema\^{i}tre Tension.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Using Gray Sirens to Resolve the Hubble-Lema\^{i}tre Tension

Reference 59

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source=pdf_text observed=2026-08-15T20:35:36.138419Z digest=sha256:fa5f74adb46a721d133b3f8c1b1775a682f84987392d68437bfeacb537adf7f6

Observation dadf4dd6-c5c8-4c13-9c85-937a811e891e · outbound

This paper cites Cosmography with next-generation gravitational wave detectors.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Cosmography with next-generation gravitational wave detectors

Reference 60

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source=pdf_text observed=2026-08-15T20:35:36.142676Z digest=sha256:b785c1a291f4a187da0b4b7856bf1997a05e4d0eb9c4aa93978d76db4afe1b73

Observation 6609f0d3-ee28-46ab-9f4a-bf1fce1c6f32 · outbound

This paper cites Report of the LSC Post-O5 Study Group,.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Report of the LSC Post-O5 Study Group,

Reference 61

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No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

source=pdf_text observed=2026-08-15T20:35:36.146148Z digest=sha256:7e4662c9f738dd62c2de2e59308193e4bf0113f23c7b0b57953ab580373d95f5

Observation 1f90ef08-b152-4ff8-9de9-fda9a0161541 · outbound

This paper cites Fluctuations of the luminosity distance.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Fluctuations of the luminosity distance

Reference 62

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source=pdf_text observed=2026-08-15T20:35:36.150480Z digest=sha256:b8018c109f93bf939d6bfb45c7bf62955174ba7563af086991669a906fe75b64

Observation 3a05d9e2-8a1f-4912-b25f-78f8bcc5a1ee · outbound

This paper cites Does the Black Hole Merger Rate Evolve with Redshift?.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Does the Black Hole Merger Rate Evolve with Redshift?

Reference 63

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source=pdf_text observed=2026-08-15T20:35:36.154446Z digest=sha256:eddeb5fe92f5f6291355ed172695eae398ae928b58f52ba3bf9ee26ed37e5219

Observation 209ae5a5-6e62-480e-b5b1-9ee4cbd969f0 · outbound

This paper cites Extracting distribution parameters from multiple uncertain observations with selection biases.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Extracting distribution parameters from multiple uncertain observations with selection biases

Reference 64

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source=pdf_text observed=2026-08-15T20:35:36.157720Z digest=sha256:884c1ab6ee3e8028ccd7a3515d6dcd44abdd1987d0042c390ee827fdde79ea85

Observation a66d79ac-1f92-4fcf-9a81-da46114b237c · outbound

This paper cites Inferring the properties of a population of compact binaries in presence of selection effects.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Inferring the properties of a population of compact binaries in presence of selection effects

Reference 65

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source=pdf_text observed=2026-08-15T20:35:36.161209Z digest=sha256:40bd06212aacf8d5fec083d082019d6f755e7f1743ddf79963de06bf7a3d58cf

Observation 78539428-8c33-4f28-ac9a-f978f918b569 · outbound

This paper cites Cosmology and Astrophysics with Standard Sirens and Galaxy Catalogs in View of Future Gravitational Wave Observations.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Cosmology and Astrophysics with Standard Sirens and Galaxy Catalogs in View of Future Gravitational Wave Observations

Reference 66

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source=pdf_text observed=2026-08-15T20:35:36.165373Z digest=sha256:9eb640e8511e75c5739204fef1336e43757b8ef859a866289e2190ad2310aa8f

Observation 3deb9762-b2a5-4010-9ce8-4e3929442593 · outbound

This paper cites Accelerating the Standard Siren Method: Improved Constraints on Modified Gravitational Wave Propagation with Future Data,.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Accelerating the Standard Siren Method: Improved Constraints on Modified Gravitational Wave Propagation with Future Data,

Reference 67

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source=pdf_text observed=2026-08-15T20:35:36.168477Z digest=sha256:e457e08d4cd34248e0c10e05fd8136231d144b5e99b3b3ca42bdf29d3cde4afc

Observation bc720762-7994-4f36-96e9-1fc455036c6a · outbound

This paper cites GLADE+: An Extended Galaxy Catalogue for Multimessenger Searches with Advanced Gravitational-wave Detectors.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors GLADE+: An Extended Galaxy Catalogue for Multimessenger Searches with Advanced Gravitational-wave Detectors

Reference 68

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source=pdf_text observed=2026-08-15T20:35:36.172670Z digest=sha256:de8a752e10bff00892579caecb22a5a8322666588ef6d2b6580fcbf5d22bfff8

Observation cac8de20-df33-4385-a0b6-b0e996106ce7 · outbound

This paper cites Testing the nature of gravitational wave propagation using dark sirens and galaxy catalogues.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Testing the nature of gravitational wave propagation using dark sirens and galaxy catalogues

Reference 69

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source=pdf_text observed=2026-08-15T20:35:36.175966Z digest=sha256:1d5927df0f16a82099a3b9036ede32669fbdfd7788053422a93e7a5fc1929459

Observation 1dae6a96-8e48-4e25-a69b-611d91747f24 · outbound

This paper cites Cosmic Star Formation History.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Cosmic Star Formation History

Reference 70

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source=pdf_text observed=2026-08-15T20:35:36.179757Z digest=sha256:27000de675fbfb2315a6f9fa521370fca57115d7b9c2991fc8d22fe750075742

Observation d61fffb8-1d80-46f3-bec9-7a585cca4ac6 · outbound

This paper cites Shouts and Murmurs: Combining Individual Gravitational-Wave Sources with the Stochastic Background to Measure the History of Binary Black Hole Mergers.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Shouts and Murmurs: Combining Individual Gravitational-Wave Sources with the Stochastic Background to Measure the History of Binary Black Hole Mergers

Reference 71

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source=pdf_text observed=2026-08-15T20:35:36.183995Z digest=sha256:6aff708da9db6d91ba28f4d839c1ba60b1f14ce4f1c709f59e6b0da4dac5b2b6

Observation 12ca55bf-b27f-43a9-8d6c-154b3946825f · outbound

This paper cites GWSim: Python package for creating mock GW samples for different astrophysical populations and cosmological models of binary black holes.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors GWSim: Python package for creating mock GW samples for different astrophysical populations and cosmological models of binary black holes

Reference 73

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source=pdf_text observed=2026-08-15T20:35:36.187461Z digest=sha256:e5f4d393aa1bc9f500f1189642937b463c7f0e92f484aaf087173f37256a1adb

Observation 159020a9-1bfe-4edf-9ea6-1bac53f5a016 · outbound

This paper cites GWDALI: A Fisher-matrix based software for gravitational wave parameter-estimation beyond Gaussian approximation,.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors GWDALI: A Fisher-matrix based software for gravitational wave parameter-estimation beyond Gaussian approximation,

Reference 74

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source=pdf_text observed=2026-08-15T20:35:36.191247Z digest=sha256:9595be34065a62900dff0c0faafba14373fd1f747228be1a6ec18adccad96b20

Observation 00bbcf0a-8c6f-4195-bc44-3d1a2cfe8db4 · outbound

This paper cites Computationally efficient models for the dominant and sub-dominant harmonic modes of precessing binary black holes.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Computationally efficient models for the dominant and sub-dominant harmonic modes of precessing binary black holes

Reference 75

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source=pdf_text observed=2026-08-15T20:35:36.194698Z digest=sha256:98fd640789a742cc6e9819d4e65c531ec3cdbe0c6227f8a6630325f9d7eb6fb5

Observation 81bc1fea-dcf2-4073-a027-1bae2554d5f0 · outbound

This paper cites An analytic expression for the luminosity function for galaxies.,.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors An analytic expression for the luminosity function for galaxies.,

Reference 76

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raw_fallback, observed 2026-08-15T20:35:37.161298Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

source=pdf_text observed=2026-08-15T20:35:36.198222Z digest=sha256:3c078ac0147218c155dcc73af963f6eb1454e5eacef24ab5b500d1a5a26d737a

Observation a8effaf8-679f-46ab-9552-00c646ee9eaf · outbound

This paper cites an unresolved cited work.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Unresolved cited work

Reference 77

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unresolved
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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

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Observation 8abb62bd-aab6-402d-b83e-754a268ea487 · outbound

This paper cites Gravitational waves from inspiralling compact binaries: Parameter estimation using second-post-Newtonian waveforms.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Gravitational waves from inspiralling compact binaries: Parameter estimation using second-post-Newtonian waveforms

Reference 78

Resolution
unresolved
no resolver link, observed 2026-08-15T20:35:36.205643Z

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Unavailable: canonical work link unavailable.

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Observation fc099c83-5359-4599-9469-b41f367efd09 · outbound

This paper cites emcee: The MCMC Hammer.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors emcee: The MCMC Hammer

Reference 79

Resolution
unresolved
no resolver link, observed 2026-08-15T20:35:36.208763Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-15T20:35:36.208763Z digest=sha256:674510ea1130c12f97c174d2ae293f5ea0840c39b0599e3f783f427fa832284a

Observation 5d64281e-5d76-419e-85bf-2d5a7a67ddc6 · outbound

This paper cites Tracing the redshift evolution of Hubble parameter with gravitational-wave standard sirens.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Tracing the redshift evolution of Hubble parameter with gravitational-wave standard sirens

Reference 80

Resolution
unresolved
no resolver link, observed 2026-08-15T20:35:36.212263Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-15T20:35:36.212263Z digest=sha256:40a38b63ba1559a6074275e9bdd552efde4e370a7b3b25ee6d574f3d53cfaa35

Observation 7465f17a-ffb1-436f-a7d2-c940b35610a8 · outbound

This paper cites Dependence of peculiar velocity on the host properties of the gravitational wave sources and its impact on the measurement of Hubble constant.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Dependence of peculiar velocity on the host properties of the gravitational wave sources and its impact on the measurement of Hubble constant

Reference 81

Resolution
unresolved
no resolver link, observed 2026-08-15T20:35:36.215146Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-15T20:35:36.215146Z digest=sha256:bb1166e490939b941647301c388395182f1a14a439032130e800c3e2328c5ae7

Observation 9be26d37-e4c8-4cce-a893-1ae177a43ebd · outbound

This paper cites Boosting gravitational waves: a review of kinematic effects on amplitude, polarization, frequency and energy density.

Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors Boosting gravitational waves: a review of kinematic effects on amplitude, polarization, frequency and energy density

Reference 82

Resolution
unresolved
no resolver link, observed 2026-08-15T20:35:36.218296Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-15T20:35:36.218296Z digest=sha256:aba18bc23513b2c058ccf772c74b57046e8e77bb33dcb37b4a86fe0299196e28

Pith citing papers

Observation 20327671-a8ba-4275-9c0a-a5ce0096ae4e · inbound

Forecasting Constraints on Cosmology and Modified Gravitational-wave Propagation by Combining Strongly Lensed Gravitational Waves and Galaxy Surveys cites this paper.

Forecasting Constraints on Cosmology and Modified Gravitational-wave Propagation by Combining Strongly Lensed Gravitational Waves and Galaxy Surveys Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors

Reference 18

Resolution
unresolved
no resolver link, observed 2026-08-03T06:51:31.121854Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

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Observation 6363b8ec-c30d-420b-8594-655ba6c11e1e · inbound

Not too close! Evaluating the impact of the baseline on the localization of binary black holes by next-generation gravitational-wave detectors cites this paper.

Not too close! Evaluating the impact of the baseline on the localization of binary black holes by next-generation gravitational-wave detectors Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors

Reference 118

Resolution
verified exact
arxiv_id, observed 2026-05-11T10:31:02.252124Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

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Observation 88dc6e8b-9ded-4800-a0ef-ef9094f8b690 · inbound

Prospect of Measuring the Cosmic Dipole by Associating Strongly Lensed Gravitational Waves with Galaxy Surveys cites this paper.

Prospect of Measuring the Cosmic Dipole by Associating Strongly Lensed Gravitational Waves with Galaxy Surveys Measuring the cosmic dipole with golden dark sirens in the era of next-generation ground-based gravitational wave detectors

Reference 56

Resolution
verified exact
arxiv_id, observed 2026-05-20T03:03:21.408838Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.

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