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Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum

As of 12 August 2026, this Paper Citation Record lists 85 of 85 outbound references and 0 inbound Pith citation observations for arXiv:2412.01219.

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pith.paper-citation-record.v1
2412.01219 v2

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measured 85 of 85 reference resolution

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85 of 85 outbound references displayed

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Outbound references

Observation f6ea6fc6-adbf-49d6-94ad-265a3042804f · outbound

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

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background

Reference 1

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Observation 53535f7f-31d5-4af4-91af-1900a135f17e · outbound

This paper cites Searching for the nano-Hertz stochastic gravitational wave background with the Chinese Pulsar Timing Array Data Release I.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Searching for the nano-Hertz stochastic gravitational wave background with the Chinese Pulsar Timing Array Data Release I

Reference 2

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Observation 4163f241-ddf5-4bcb-b2a1-ead51855d244 · outbound

This paper cites The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum The second data release from the European Pulsar Timing Array III. Search for gravitational wave signals

Reference 3

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Observation dbbe5876-c95f-4966-92cf-87a715acad9e · outbound

This paper cites Search for an isotropic gravitational-wave background with the Parkes Pulsar Timing Array.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Search for an isotropic gravitational-wave background with the Parkes Pulsar Timing Array

Reference 4

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Observation 40aac23d-c3d9-4c03-92b1-8c367eed8d39 · outbound

This paper cites The MeerKAT Pulsar Timing Array: The first search for gravitational waves with the MeerKAT radio telescope.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum The MeerKAT Pulsar Timing Array: The first search for gravitational waves with the MeerKAT radio telescope

Reference 5

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Observation 3dc9aff9-609e-4a89-8433-3eaf2855417b · outbound

This paper cites Stochastic background of gravitational waves generated by a cosmological population of young, rapidly rotating neutron stars.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Stochastic background of gravitational waves generated by a cosmological population of young, rapidly rotating neutron stars

Reference 6

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Observation d8e23d53-665b-46ff-a0fc-9ac31a7d797c · outbound

This paper cites Gravitational Wave Background from a Cosmological Population of Core-Collapse Supernovae.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Gravitational Wave Background from a Cosmological Population of Core-Collapse Supernovae

Reference 7

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Observation 8deb56dc-003f-4e6e-857f-e4225d253241 · outbound

This paper cites Gravitational waves from cosmological compact binaries.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Gravitational waves from cosmological compact binaries

Reference 8

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Observation 135740fb-a968-464d-b8ab-1a9ad9464539 · outbound

This paper cites The Gravitational Wave Background from Cosmological Compact Binaries.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum The Gravitational Wave Background from Cosmological Compact Binaries

Reference 9

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Observation 84c3a989-723a-4592-bcb1-1035fea5152b · outbound

This paper cites The astrophysical gravitational wave stochastic background.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum The astrophysical gravitational wave stochastic background

Reference 10

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Observation e472df8c-bf70-4278-a331-d87c8c2e06f9 · outbound

This paper cites Stochastic Gravitational Wave Background from Coalescing Binary Black Holes.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Stochastic Gravitational Wave Background from Coalescing Binary Black Holes

Reference 11

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Observation cf93ff46-156c-406e-ab9d-31a019d87133 · outbound

This paper cites Vachaspati and A.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Vachaspati and A

Reference 12

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Observation f5d67555-5520-40d4-99a5-fa568d982620 · outbound

This paper cites Kosowsky, M.S.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Kosowsky, M.S

Reference 13

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Observation b4ad2061-8415-4c50-8cc7-5d61a96629cd · outbound

This paper cites Gravitational waves from inflation.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Gravitational waves from inflation

Reference 14

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Observation c2da573c-6a01-417e-8b17-c35e4aec1e6e · outbound

This paper cites Cosmological Backgrounds of Gravitational Waves.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Cosmological Backgrounds of Gravitational Waves

Reference 15

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Observation 71499a90-e163-4a42-914d-4a4552430be0 · outbound

This paper cites Challenges and Opportunities of Gravitational Wave Searches at MHz to GHz Frequencies.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Challenges and Opportunities of Gravitational Wave Searches at MHz to GHz Frequencies

Reference 16

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Observation 63ad5eca-1c16-4517-be00-f7d19424bd8f · outbound

This paper cites Primordial gravity wave background anisotropies.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Primordial gravity wave background anisotropies

Reference 17

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Observation e4d4cc6e-65aa-431e-a611-7f93e0bcf55d · outbound

This paper cites Large anisotropies of the stochastic gravitational wave background from cosmic domain walls.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Large anisotropies of the stochastic gravitational wave background from cosmic domain walls

Reference 18

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Observation e7b196b0-6cb3-414e-bb00-88c0d718c1d9 · outbound

This paper cites Anisotropies of Gravitational Wave Backgrounds: A Line Of Sight Approach.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Anisotropies of Gravitational Wave Backgrounds: A Line Of Sight Approach

Reference 19

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Observation 26746dfe-c517-46da-a9f5-058c726e44f5 · outbound

This paper cites Primordial Anisotropies in the Gravitational Wave Background from Cosmological Phase Transitions.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Primordial Anisotropies in the Gravitational Wave Background from Cosmological Phase Transitions

Reference 20

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Observation 370c6981-c31a-4690-9857-547218288479 · outbound

This paper cites Anisotropies and non-Gaussianity of the Cosmological Gravitational Wave Background.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Anisotropies and non-Gaussianity of the Cosmological Gravitational Wave Background

Reference 21

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This paper cites Characterizing the Cosmological Gravitational Wave Background Anisotropies and non-Gaussianity.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Characterizing the Cosmological Gravitational Wave Background Anisotropies and non-Gaussianity

Reference 22

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Observation 1608919e-90e4-4d33-b2ad-c2a11027e80d · outbound

This paper cites The Imprint of Relativistic Particles on the Anisotropies of the Stochastic Gravitational-Wave Background.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum The Imprint of Relativistic Particles on the Anisotropies of the Stochastic Gravitational-Wave Background

Reference 23

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Observation f9063c9e-3db7-4585-9c0e-e2e561736c57 · outbound

This paper cites Anisotropy of phase transition gravitational wave and its implication for primordial seeds of the Universe.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Anisotropy of phase transition gravitational wave and its implication for primordial seeds of the Universe

Reference 24

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This paper cites GW_CLASS: Cosmological Gravitational Wave Background in the Cosmic Linear Anisotropy Solving System.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum GW_CLASS: Cosmological Gravitational Wave Background in the Cosmic Linear Anisotropy Solving System

Reference 25

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This paper cites Unraveling Cosmological Anisotropies within Stochastic Gravitational Wave Backgrounds.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Unraveling Cosmological Anisotropies within Stochastic Gravitational Wave Backgrounds

Reference 26

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This paper cites Implications of Pulsar Timing Array Data for Scalar-Induced Gravitational Waves and Primordial Black Holes: Primordial Non-Gaussianity $f_{\mathrm{NL}}$ Considered.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Implications of Pulsar Timing Array Data for Scalar-Induced Gravitational Waves and Primordial Black Holes: Primordial Non-Gaussianity $f_{\mathrm{NL}}$ Considered

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This paper cites Primordial Non-Gaussianity $f_{\mathrm{NL}}$ and Anisotropies in Scalar-Induced Gravitational Waves.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Primordial Non-Gaussianity $f_{\mathrm{NL}}$ and Anisotropies in Scalar-Induced Gravitational Waves

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This paper cites Circular Polarization of the Astrophysical Gravitational Wave Background.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Circular Polarization of the Astrophysical Gravitational Wave Background

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This paper cites Anisotropies in the Gravitational Wave Background from Preheating.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Anisotropies in the Gravitational Wave Background from Preheating

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This paper cites Anisotropy of the astrophysical gravitational wave background: analytic expression of the angular power spectrum and correlation with cosmological observations.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Anisotropy of the astrophysical gravitational wave background: analytic expression of the angular power spectrum and correlation with cosmological observations

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Observation d431755c-65c8-440b-9eab-d5eaffbd47d5 · outbound

This paper cites First predictions of the angular power spectrum of the astrophysical gravitational wave background.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum First predictions of the angular power spectrum of the astrophysical gravitational wave background

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This paper cites Anisotropies in the astrophysical gravitational-wave background: The impact of black hole distributions.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Anisotropies in the astrophysical gravitational-wave background: The impact of black hole distributions

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This paper cites Properties of the stochastic astrophysical gravitational wave background: astrophysical sources dependencies.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Properties of the stochastic astrophysical gravitational wave background: astrophysical sources dependencies

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Observation f1d6f9ec-a86f-40db-95f6-141fb810601a · outbound

This paper cites Projection effects on the observed angular spectrum of the astrophysical stochastic gravitational wave background.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Projection effects on the observed angular spectrum of the astrophysical stochastic gravitational wave background

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Observation b226208c-6555-43f5-a066-641b1a24e2db · outbound

This paper cites CLASS_GWB: robust modeling of the astrophysical gravitational wave background anisotropies.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum CLASS_GWB: robust modeling of the astrophysical gravitational wave background anisotropies

Reference 36

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Observation 38444b38-d38a-47c0-adf7-1211701a125f · outbound

This paper cites Exploring the spectrum of stochastic gravitational-wave anisotropies with pulsar timing arrays.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Exploring the spectrum of stochastic gravitational-wave anisotropies with pulsar timing arrays

Reference 37

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Observation 0f888cac-f64c-41d6-b3d5-64ffbe936259 · outbound

This paper cites Forecasting pulsar timing array sensitivity to anisotropy in the stochastic gravitational wave background.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Forecasting pulsar timing array sensitivity to anisotropy in the stochastic gravitational wave background

Reference 38

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Observation 6f4eeca0-28cc-4358-ae9a-bbea6f177988 · outbound

This paper cites New universal property of cosmological gravitational wave anisotropies.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum New universal property of cosmological gravitational wave anisotropies

Reference 39

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Observation 9e12de8e-ba68-4c6e-8308-752dc5ec4762 · outbound

This paper cites Anisotropies in Scalar-Induced Gravitational-Wave Background from Inflaton-Curvaton Mixed Scenario with Sound Speed Resonance.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Anisotropies in Scalar-Induced Gravitational-Wave Background from Inflaton-Curvaton Mixed Scenario with Sound Speed Resonance

Reference 40

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Observation 276ac34a-007f-4fcb-8483-bd034b49caa9 · outbound

This paper cites Anisotropies of cosmological gravitational wave backgrounds in non-flat spacetime.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Anisotropies of cosmological gravitational wave backgrounds in non-flat spacetime

Reference 41

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Observation 148dd057-b03c-49a4-8367-6e5dcfe165b6 · outbound

This paper cites Detecting the anisotropic astrophysical gravitational wave background in the presence of shot noise through cross-correlations.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Detecting the anisotropic astrophysical gravitational wave background in the presence of shot noise through cross-correlations

Reference 42

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Observation c0d14778-4b01-4946-872f-e246e6ce719f · outbound

This paper cites The $N_\ell$ of gravitational wave background experiments.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum The $N_\ell$ of gravitational wave background experiments

Reference 43

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Observation bc887e5f-3e87-425d-b599-57000f3a5bf8 · outbound

This paper cites Cross-correlating Astrophysical and Cosmological Gravitational Wave Backgrounds with the Cosmic Microwave Background.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Cross-correlating Astrophysical and Cosmological Gravitational Wave Backgrounds with the Cosmic Microwave Background

Reference 44

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Observation 464a2d72-58bb-483b-954d-358cd4e1606e · outbound

This paper cites Detectability of the cross-correlation between CMB lensing and stochastic GW background from compact object mergers.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Detectability of the cross-correlation between CMB lensing and stochastic GW background from compact object mergers

Reference 45

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Observation 7b6de1a1-bb5c-4e56-a596-e3734272e0a6 · outbound

This paper cites Anisotropies in the astrophysical gravitational-wave background: Predictions for the detection of compact binaries by LIGO and Virgo.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Anisotropies in the astrophysical gravitational-wave background: Predictions for the detection of compact binaries by LIGO and Virgo

Reference 46

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Observation e1658c4a-bd78-4961-bb43-21f3c4d7d328 · outbound

This paper cites Measuring the anisotropies in astrophysical and cosmological gravitational-wave backgrounds with Taiji and LISA networks.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Measuring the anisotropies in astrophysical and cosmological gravitational-wave backgrounds with Taiji and LISA networks

Reference 47

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Observation cba526d7-7b93-4f51-b79f-219a6e050723 · outbound

This paper cites Searching for anisotropic stochastic gravitational-wave backgrounds with constellations of space-based interferometers.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Searching for anisotropic stochastic gravitational-wave backgrounds with constellations of space-based interferometers

Reference 48

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Observation a9d9707d-5a95-44f0-a708-fac79a91e9a9 · outbound

This paper cites Mapping Incoherent Gravitational Wave Backgrounds.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Mapping Incoherent Gravitational Wave Backgrounds

Reference 49

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Observation 2edb4645-47bf-4881-a2c6-51713219e5cd · outbound

This paper cites Improved limits on a stochastic gravitational-wave background and its anisotropies from Advanced LIGO O1 and O2 runs.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Improved limits on a stochastic gravitational-wave background and its anisotropies from Advanced LIGO O1 and O2 runs

Reference 50

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source=pdf_text observed=2026-08-12T04:42:52.274820Z digest=sha256:c360b77c9de1a968df0985557e312e19e835f6a3a1505e24c245ac35b8762c94

Observation 6a74cb05-8852-4911-8c48-6404ee40f6e9 · outbound

This paper cites Banagiri, A.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Banagiri, A

Reference 51

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Observation 243e0449-b628-458a-857e-0f5252b2d9f0 · outbound

This paper cites Probing Anisotropies of the Stochastic Gravitational Wave Background with LISA.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Probing Anisotropies of the Stochastic Gravitational Wave Background with LISA

Reference 52

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Observation e8b15088-6f4d-43e7-bf92-d488f3aa1c36 · outbound

This paper cites Untargeted Bayesian search of anisotropic gravitational-wave backgrounds through the analytical marginalization of the posterior.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Untargeted Bayesian search of anisotropic gravitational-wave backgrounds through the analytical marginalization of the posterior

Reference 53

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Observation 933bdff0-04b6-4089-bc7a-a494b5f9b6d8 · outbound

This paper cites Bayesian parameter estimation for targeted anisotropic gravitational-wave background.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Bayesian parameter estimation for targeted anisotropic gravitational-wave background

Reference 54

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Observation 3854c4ea-c00b-4397-aec5-dda1c1454842 · outbound

This paper cites Mapping gravitational-wave backgrounds using methods from CMB analysis: Application to pulsar timing arrays.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Mapping gravitational-wave backgrounds using methods from CMB analysis: Application to pulsar timing arrays

Reference 55

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Observation 9927ac76-abeb-461c-b9d6-00312eb36de5 · outbound

This paper cites Mapping Anisotropies in the Stochastic Gravitational-Wave Background with TianQin.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Mapping Anisotropies in the Stochastic Gravitational-Wave Background with TianQin

Reference 56

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source=pdf_text observed=2026-08-12T04:42:52.299273Z digest=sha256:f4487add245d72c8accf586e981b1fed15f04e81a63a8ec33eb2b226051970b1

Observation daeee5ff-c32b-4c4b-a32f-b901e31059c0 · outbound

This paper cites The NANOGrav 15-year Data Set: Search for Anisotropy in the Gravitational-Wave Background.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum The NANOGrav 15-year Data Set: Search for Anisotropy in the Gravitational-Wave Background

Reference 57

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Observation 4221b94c-ad4c-4984-8b3f-c1b5996baf80 · outbound

This paper cites Multimessenger Cosmology: correlating CMB and SGWB measurements.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Multimessenger Cosmology: correlating CMB and SGWB measurements

Reference 58

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Observation 6bfc2caf-be03-4ab4-90ed-bb6f20b421d3 · outbound

This paper cites On the anisotropies of the cosmological gravitational-wave background from pulsar timing array observations.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum On the anisotropies of the cosmological gravitational-wave background from pulsar timing array observations

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source=pdf_text observed=2026-08-12T04:42:52.311521Z digest=sha256:6ab3ccc7a08d496c0c3f4df400a40ce3479631c99f47d0578e95ae46f0b5ae6c

Observation d3a19192-f40e-4903-8c4a-2fff683c4321 · outbound

This paper cites Measurement of the Cross-Correlation Angular Power Spectrum Between the Stochastic Gravitational Wave Background and Galaxy Over-Density.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Measurement of the Cross-Correlation Angular Power Spectrum Between the Stochastic Gravitational Wave Background and Galaxy Over-Density

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Observation afd21bff-561f-4614-9e4d-29e940923a53 · outbound

This paper cites Laser Interferometer Space Antenna.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Laser Interferometer Space Antenna

Reference 61

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Observation 62c17a64-8d3c-4279-adcb-d778fea5f389 · outbound

This paper cites New Horizons for Fundamental Physics with LISA.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum New Horizons for Fundamental Physics with LISA

Reference 62

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Observation 33b791f6-fcff-4510-824a-b139390ad1f6 · outbound

This paper cites LISA Definition Study Report.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum LISA Definition Study Report

Reference 63

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Observation 7a1906a1-52e9-425e-b342-c7bb966769a4 · outbound

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

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum LISA for Cosmologists: Calculating the Signal-to-Noise Ratio for Stochastic and Deterministic Sources

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Observation dc27c167-7e78-45ac-8cd1-0ee7e16c615c · outbound

This paper cites Probing the anisotropies of a stochastic gravitational-wave background using a network of ground-based laser interferometers.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Probing the anisotropies of a stochastic gravitational-wave background using a network of ground-based laser interferometers

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Observation 2e49c535-51be-4c34-aed6-488cc86493f1 · outbound

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

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Detection methods for stochastic gravitational-wave backgrounds: a unified treatment

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Observation 797a9d9d-ae85-48f8-957b-9cf8f9646c1c · outbound

This paper cites Kurki-Suonio, V.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Kurki-Suonio, V

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Observation cf11a51f-42d6-4695-9ba6-05e86770af69 · outbound

This paper cites Hirata, S.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Hirata, S

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Observation 1b90fd47-337c-4511-8ed7-50da57dc5993 · outbound

This paper cites Measuring Dark Energy Clustering with CMB-Galaxy Correlations.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Measuring Dark Energy Clustering with CMB-Galaxy Correlations

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Observation 13f07e4b-bcac-47ab-afe8-1fff9b68fbce · outbound

This paper cites Understanding and analysing time-correlated stochastic signals in pulsar timing.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Understanding and analysing time-correlated stochastic signals in pulsar timing

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Observation 68ca5e93-49b6-4576-8375-888159bc3990 · outbound

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

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Gravitational waves from first-order phase transitions in LISA: reconstruction pipeline and physics interpretation

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Observation eaba41fd-9ed0-416c-b5b6-ea35b1b19cfd · outbound

This paper cites Science with the space-based interferometer LISA. IV: Probing inflation with gravitational waves.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Science with the space-based interferometer LISA. IV: Probing inflation with gravitational waves

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Observation ad7ce2aa-36de-4e8b-84b5-f758d8c68c73 · outbound

This paper cites HEALPix -- a Framework for High Resolution Discretization, and Fast Analysis of Data Distributed on the Sphere.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum HEALPix -- a Framework for High Resolution Discretization, and Fast Analysis of Data Distributed on the Sphere

Reference 73

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source=pdf_text observed=2026-08-12T04:42:52.366984Z digest=sha256:b8f6231099d57ae132222077212a23e89f25a9568900098dad67c1f7f7b144c9

Observation 5698afa3-4a41-43ba-a7e3-6d9ebf047f63 · outbound

This paper cites Forward Modeling of Space-borne Gravitational Wave Detectors.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Forward Modeling of Space-borne Gravitational Wave Detectors

Reference 74

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no resolver link, observed 2026-08-12T04:42:52.371303Z

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source=pdf_text observed=2026-08-12T04:42:52.371303Z digest=sha256:89829a87b43fdea95b3ebe49f76cde37c684ea6fdb921c4d6556a8d96588a4eb

Observation f27a9a69-c7d9-455f-bb89-5615c8a07aed · outbound

This paper cites Pulsar and cosmic variances of pulsar timing-array correlation measurements of the stochastic gravitational wave background.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Pulsar and cosmic variances of pulsar timing-array correlation measurements of the stochastic gravitational wave background

Reference 75

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no resolver link, observed 2026-08-12T04:42:52.375371Z

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source=pdf_text observed=2026-08-12T04:42:52.375371Z digest=sha256:f6b9260d3600fde4cf2b1e537af36e338d00b59d489b11c4f49235f4043d0686

Observation de17ad97-3e68-49a8-9ad8-b415a16d5055 · outbound

This paper cites Upper Limits on the Stochastic Gravitational-Wave Background from Advanced LIGO's First Observing Run.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Upper Limits on the Stochastic Gravitational-Wave Background from Advanced LIGO's First Observing Run

Reference 76

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source=pdf_text observed=2026-08-12T04:42:52.379469Z digest=sha256:402b8cde955a32a83c090a918ffe171656fed1f69eeb3ad19b1c9e64417f5dbf

Observation 34431ca5-6a36-4575-8281-55a257f85150 · outbound

This paper cites TianQin: a space-borne gravitational wave detector.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum TianQin: a space-borne gravitational wave detector

Reference 77

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no resolver link, observed 2026-08-12T04:42:52.384421Z

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source=pdf_text observed=2026-08-12T04:42:52.384421Z digest=sha256:24ee4ad648ee9b6c36f58cab069d52662dcb3c341f07a5614e5d6281e6f3454d

Observation ffdff1e9-0329-4af8-a0bf-025ab0f61017 · outbound

This paper cites Hu and Y.-L.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Hu and Y.-L

Reference 78

Resolution
verified fuzzy
raw_fallback, observed 2026-08-12T04:42:53.248873Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-08-12T04:42:52.388781Z digest=sha256:be41682ebe398a40db08d7b9cf334818e355ad56f34ffae137500664f86fbe8c

Observation 1a7001e1-7187-4f0d-ae67-11016c86d051 · outbound

This paper cites Taiji Program: Gravitational-Wave Sources.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Taiji Program: Gravitational-Wave Sources

Reference 79

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no resolver link, observed 2026-08-12T04:42:52.393267Z

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source=pdf_text observed=2026-08-12T04:42:52.393267Z digest=sha256:af90d03289f8b7e0352551f3f637f6dab39809f524224e598b6a5ee7cf5f9476

Observation 31b51b86-8bfe-4949-9abd-c945af431db9 · outbound

This paper cites Kawamura et al.,The Japanese space gravitational wave antenna: DECIGO, Class.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Kawamura et al.,The Japanese space gravitational wave antenna: DECIGO, Class

Reference 80

Resolution
verified fuzzy
raw_fallback, observed 2026-08-12T04:42:53.236991Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-08-12T04:42:52.397985Z digest=sha256:37927ea9a11e451deae798af28ecfa150f11bedf2731cc540fd9178135431099

Observation b05b0d05-9816-4ad7-9423-861782ca7159 · outbound

This paper cites Detecting the Cosmic Gravitational Wave Background with the Big Bang Observer.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Detecting the Cosmic Gravitational Wave Background with the Big Bang Observer

Reference 81

Resolution
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no resolver link, observed 2026-08-12T04:42:52.402184Z

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source=pdf_text observed=2026-08-12T04:42:52.402184Z digest=sha256:3d6dcefd70c22aa87625a8a326d824b11e2b98cae408c9a30a6ebdd82b2e69b3

Observation 285e4895-a50f-479b-8a20-4ecb66d6f082 · outbound

This paper cites Science Case for the Einstein Telescope.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Science Case for the Einstein Telescope

Reference 82

Resolution
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no resolver link, observed 2026-08-12T04:42:52.406338Z

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source=pdf_text observed=2026-08-12T04:42:52.406338Z digest=sha256:3acbf1b0694384491c062a9db6a731f0c5cac43d577b70b761ebe1f961a78f05

Observation 89832e90-7b29-48e6-8ab1-8a7e767336b4 · outbound

This paper cites Detection of astrophysical gravitational wave sources by TianQin and LISA.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Detection of astrophysical gravitational wave sources by TianQin and LISA

Reference 83

Resolution
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no resolver link, observed 2026-08-12T04:42:52.410614Z

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source=pdf_text observed=2026-08-12T04:42:52.410614Z digest=sha256:7d257a8269825eb43b84b4f36c5f0a41a8f932db928fda4dfba971f3bc438b72

Observation 654a638f-997a-4d43-99c0-e3af25ebe9b8 · outbound

This paper cites Joint gravitational wave detection by TianQin and LISA.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Joint gravitational wave detection by TianQin and LISA

Reference 84

Resolution
unresolved
no resolver link, observed 2026-08-12T04:42:52.415009Z

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source=pdf_text observed=2026-08-12T04:42:52.415009Z digest=sha256:adb73927f732a4ce8dc46a81ffc8a1619367b916fee4fe35c493ca78ecf44f3a

Observation 835d3a0b-d274-445b-87a0-dd0697f084c2 · outbound

This paper cites Unveiling a multi-component stochastic gravitational-wave background with the TianQin + LISA network.

Estimating the gravitational wave background anisotropy: a Bayesian approach boosted by cross-correlation angular power spectrum Unveiling a multi-component stochastic gravitational-wave background with the TianQin + LISA network

Reference 85

Resolution
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source=pdf_text observed=2026-08-12T04:42:52.419433Z digest=sha256:6e599102996a969c27577cc9da31d56aff9b823c64fd3bf06fd781b031111ceb

Pith citing papers

No inbound Pith citation observations are available.