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Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge

As of 22 August 2026, this Paper Citation Record lists 70 of 70 outbound references and 2 inbound Pith citation observations for arXiv:2506.14179.

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

pith.paper-citation-record.v1
2506.14179 v1

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measured 70 of 70 reference resolution

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Pith citing papers itemized under the disclosed page cap.

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Source: pith, observed 2026-08-06T22:25:04.937083Z

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70 of 70 outbound references displayed

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Outbound references

Observation f2494979-0d16-4d62-9b92-eee97221335a · outbound

This paper cites Advanced LIGO.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Advanced LIGO

Reference 1

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Observation 4a2a1cf5-a074-48aa-9b3c-9c4d8b8803c2 · outbound

This paper cites Advanced Virgo: a 2nd generation interferometric gravitational wave detector.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Advanced Virgo: a 2nd generation interferometric gravitational wave detector

Reference 2

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Observation 15d835dc-4d74-4ffc-b2de-4dee15c5d94a · outbound

This paper cites GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run

Reference 3

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Observation 23972233-a868-4507-9bb2-43f44d9f106c · outbound

This paper cites GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run

Reference 4

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Observation 955fdd97-feac-460a-b524-11952170750a · outbound

This paper cites For each segment, we compute the signal evidenceZ i s and the noise evidence Z i n using Bilby [50], which employs nested sampling with the dynesty sampler [51].

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge For each segment, we compute the signal evidenceZ i s and the noise evidence Z i n using Bilby [50], which employs nested sampling with the dynesty sampler [51]

Reference 5

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Observation e11df79b-413b-4747-b7d3-bafc1520c418 · outbound

This paper cites GWTC-2.1: Deep Extended Catalog of Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge GWTC-2.1: Deep Extended Catalog of Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run

Reference 6

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Observation ea061bdd-4e81-42e7-8875-7ab493b21caa · outbound

This paper cites Abbott et al.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Abbott et al

Reference 7

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Observation 03a36828-4fac-4f6a-89a0-7e436dc48129 · outbound

This paper cites Evidence for hierarchical black hole mergers in the second LIGO--Virgo gravitational-wave catalog.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Evidence for hierarchical black hole mergers in the second LIGO--Virgo gravitational-wave catalog

Reference 8

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Observation 416189b6-c5d5-48e0-b74c-7379cbfc925d · outbound

This paper cites One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways

Reference 9

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Observation c1742ad7-f748-4e99-84c0-652c40a5bfd3 · outbound

This paper cites The properties of merging black holes and neutron stars across cosmic time.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge The properties of merging black holes and neutron stars across cosmic time

Reference 10

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Observation 5ad54a8d-dcaa-4e15-9f8d-75e0f16ca2b5 · outbound

This paper cites Gravitational-wave detection rates for compact binaries formed in isolation: LIGO/Virgo O3 and beyond.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Gravitational-wave detection rates for compact binaries formed in isolation: LIGO/Virgo O3 and beyond

Reference 11

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Observation 1c0d374c-e899-4216-a893-2c407f2dad83 · outbound

This paper cites Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations II: Double Compact Object Rates and Properties.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations II: Double Compact Object Rates and Properties

Reference 12

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Observation 5b409725-e085-4096-b8a4-c9537dd4ae0d · outbound

This paper cites The redshift evolution of the binary black hole merger rate: a weighty matter.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge The redshift evolution of the binary black hole merger rate: a weighty matter

Reference 13

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Observation 8ca990d2-8fc8-4ae3-84dc-408c55616577 · outbound

This paper cites The population of merging compact binaries inferred using gravitational waves through GWTC-3.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge The population of merging compact binaries inferred using gravitational waves through GWTC-3

Reference 14

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Observation 1fd769e2-2785-4fe6-a660-ffe1c248c47c · 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.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Shouts and Murmurs: Combining Individual Gravitational-Wave Sources with the Stochastic Background to Measure the History of Binary Black Hole Mergers

Reference 15

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Observation 85baef56-2911-4d31-95d5-ae0cfc5ee2fc · outbound

This paper cites Inferring the population properties of binary black holes from unresolved gravitational waves.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Inferring the population properties of binary black holes from unresolved gravitational waves

Reference 16

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Observation f7842978-620d-4ecc-bf56-1bcd1ffea35a · outbound

This paper cites The metallicity dependence and evolutionary times of merging binary black holes: Combined constraints from individual gravitational-wave detections and the stochastic background.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge The metallicity dependence and evolutionary times of merging binary black holes: Combined constraints from individual gravitational-wave detections and the stochastic background

Reference 17

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Observation af1768ab-0a32-4979-8dc9-eeb8c971a974 · outbound

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

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Detecting a stochastic background of gravitational radiation: Signal processing strategies and sensitivities

Reference 18

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Observation fb70e350-2375-44a4-958a-1e720e8d0f48 · outbound

This paper cites Search for the isotropic stochastic background using data from Advanced LIGO's second observing run.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Search for the isotropic stochastic background using data from Advanced LIGO's second observing run

Reference 19

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Observation d180bfc4-07e7-457e-b2e1-14b1dc9faeba · outbound

This paper cites GWTC-1: A Gravitational-Wave Transient Catalog of Compact Binary Mergers Observed by LIGO and Virgo during the First and Second Observing Runs.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge GWTC-1: A Gravitational-Wave Transient Catalog of Compact Binary Mergers Observed by LIGO and Virgo during the First and Second Observing Runs

Reference 20

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Observation 75680453-4d48-47d6-bb05-dc1f4380f4d2 · outbound

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

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Upper Limits on the Stochastic Gravitational-Wave Background from Advanced LIGO's First Observing Run

Reference 21

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Observation c278fe9c-235f-4ae9-9d33-feae86ae3b21 · outbound

This paper cites GW170817: Implications for the Stochastic Gravitational-Wave Background from Compact Binary Coalescences.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge GW170817: Implications for the Stochastic Gravitational-Wave Background from Compact Binary Coalescences

Reference 22

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Observation 3349aa1d-3447-4c62-945c-f37df2880635 · outbound

This paper cites Source Confusion from Neutron Star Binaries in Ground-Based Gravitational Wave Detectors is Minimal.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Source Confusion from Neutron Star Binaries in Ground-Based Gravitational Wave Detectors is Minimal

Reference 23

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Observation 819859cc-abe5-4c88-b973-8ddc388bcb27 · outbound

This paper cites The optimal search for an astrophysical gravitational-wave background.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge The optimal search for an astrophysical gravitational-wave background

Reference 24

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Observation 1c0195df-54a2-486f-9022-115f6995d2b0 · outbound

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Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Unresolved cited work

Reference 25

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Observation 2167eb17-5b87-41bc-8491-d377db663df7 · outbound

This paper cites A Semi-Parametric Approach to the Detection of Non-Gaussian Gravitational Wave Stochastic Backgrounds.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge A Semi-Parametric Approach to the Detection of Non-Gaussian Gravitational Wave Stochastic Backgrounds

Reference 26

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Observation b8feef79-8679-4ff3-bb99-792f12ee40b7 · outbound

This paper cites Thrane, Phys.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Thrane, Phys

Reference 27

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Observation 605a9ac0-5ac7-48ea-8f3f-056bc0879cae · outbound

This paper cites Searching for cosmological gravitational-wave backgrounds with third-generation detectors in the presence of an astrophysical foreground.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Searching for cosmological gravitational-wave backgrounds with third-generation detectors in the presence of an astrophysical foreground

Reference 28

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Observation 7d6fde8c-20d0-4859-a2c5-65c6e0fdf769 · outbound

This paper cites Detecting non-Gaussian gravitational wave backgrounds: a unified framework.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Detecting non-Gaussian gravitational wave backgrounds: a unified framework

Reference 29

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Observation bbdb51fe-6794-46bf-b102-2fc4ce75c58f · outbound

This paper cites Tracking the origin of black holes with the stochastic gravitational wave background popcorn signal.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Tracking the origin of black holes with the stochastic gravitational wave background popcorn signal

Reference 30

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Observation 984a13b0-00d5-4979-b207-d55a1618d6da · outbound

This paper cites Deep learning for intermittent gravitational wave signals.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Deep learning for intermittent gravitational wave signals

Reference 31

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Observation af8be4c3-8219-4c52-b400-3fee69de2289 · outbound

This paper cites A stochastic search for intermittent gravitational-wave backgrounds.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge A stochastic search for intermittent gravitational-wave backgrounds

Reference 32

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Observation d59f5c56-5191-4eff-8ff0-b67035d99dc1 · outbound

This paper cites Time-dependence of the astrophysical stochastic gravitational wave background.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Time-dependence of the astrophysical stochastic gravitational wave background

Reference 33

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Observation 54676149-565f-49f5-84f6-0dff03b817cd · outbound

This paper cites Non-Stationary Astrophysical Stochastic Gravitational-Wave Background: A New Probe to the High Redshift Population of Binary Black Holes.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Non-Stationary Astrophysical Stochastic Gravitational-Wave Background: A New Probe to the High Redshift Population of Binary Black Holes

Reference 34

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Observation 0b41b221-72ff-4e3a-9f63-9b0bfd4b49bd · outbound

This paper cites Gravitational-wave astronomy with an uncertain noise power spectral density.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Gravitational-wave astronomy with an uncertain noise power spectral density

Reference 35

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source=pdf_text observed=2026-08-07T00:25:52.032538Z digest=sha256:a17898b2d8e38048e80cea896ffd360f9cc7b4f285e558abe9e1ebf87ed76fb6

Observation c2cafb58-083e-4027-9234-85680145dd62 · outbound

This paper cites Inference with finite time series: Observing the gravitational Universe through windows.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Inference with finite time series: Observing the gravitational Universe through windows

Reference 36

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Observation eb488dcc-43a7-4ddd-91fa-4b65b2467c3a · outbound

This paper cites Biscoveanu, C.-J.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Biscoveanu, C.-J

Reference 37

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Observation c85ed708-4a6b-4110-852f-c9a4c57bdb57 · outbound

This paper cites Thrane and C.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Thrane and C

Reference 38

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Observation 8bcd45ec-996f-4a86-be94-f2b05fcd9e79 · outbound

This paper cites Skilling, AIP Conf.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Skilling, AIP Conf

Reference 39

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Observation 11f360b9-0e5b-4145-a74f-73a0bbd62ff4 · outbound

This paper cites Skilling, Bayesian Analysis 1, 833 (2006).

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Skilling, Bayesian Analysis 1, 833 (2006)

Reference 40

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Observation 169315c2-9e8d-49fd-a877-7f439c61682a · outbound

This paper cites an unresolved cited work.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Unresolved cited work

Reference 41

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Observation c8952da6-ebb1-4763-bd59-2988b6e07417 · outbound

This paper cites DAGnabbit! Ensuring Consistency between Noise and Detection in Hierarchical Bayesian Inference.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge DAGnabbit! Ensuring Consistency between Noise and Detection in Hierarchical Bayesian Inference

Reference 42

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Observation 110b5e14-b0f0-4432-90f9-0285e438f1bb · outbound

This paper cites Constraining the Gravitational-Wave Afterglow From a Binary Neutron Star Coalescence.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Constraining the Gravitational-Wave Afterglow From a Binary Neutron Star Coalescence

Reference 43

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local_arxiv, observed 2026-08-07T00:25:56.049619Z

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source=pdf_text observed=2026-08-07T00:25:52.772479Z digest=sha256:f7aacddd44497fd2194866bb7bf27dd723ed802e0644b6605ff6c6f16e238a84

Observation d9d04c79-6722-481a-a43f-952dd5706c5d · outbound

This paper cites Allen, J.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Allen, J

Reference 44

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

source=pdf_text observed=2026-08-07T00:25:52.851230Z digest=sha256:73c7e46e1860f9a7e1244e87916e6c7c3b8cd4a1bbb633fc828a65fd10a9fc01

Observation 4280514f-d24e-4105-81a5-5af7f384ee6f · outbound

This paper cites Unser, Signal Processing 7, 231 (1984).

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Unser, Signal Processing 7, 231 (1984)

Reference 45

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Source-reported events for the cited work

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

source=pdf_text observed=2026-08-07T00:25:52.947322Z digest=sha256:b2b72499ab5d38a54400b0fd1cdbed1982b493be787cdee512e40cbcfaab2a94

Observation 56740860-3c98-4969-b07e-59028365252c · outbound

This paper cites Analyzing black-hole ringdowns.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Analyzing black-hole ringdowns

Reference 46

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Observation 01c65575-e0e0-4633-8d81-bb09ee8ad0d1 · outbound

This paper cites Analyzing black-hole ringdowns II: data conditioning.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Analyzing black-hole ringdowns II: data conditioning

Reference 47

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source=pdf_text observed=2026-08-07T00:25:53.093356Z digest=sha256:9c1502fa7d1af3ab9fd98f785301cfe03f1355a7c06fe14b7a3a739a51068c2b

Observation 13a0b93c-7820-45e8-853d-856f2a37399a · outbound

This paper cites Mind the gap: addressing data gaps and assessing noise mismodeling in LISA.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Mind the gap: addressing data gaps and assessing noise mismodeling in LISA

Reference 48

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source=pdf_text observed=2026-08-07T00:25:53.186702Z digest=sha256:852cba4e17cdd77cf554e3053ff2cabcdcbcf73a4a935b892e55c395129b963b

Observation 4cb6b5b5-cd99-432b-944b-3e01097ed2d4 · outbound

This paper cites GW170814: A Three-Detector Observation of Gravitational Waves from a Binary Black Hole Coalescence.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge GW170814: A Three-Detector Observation of Gravitational Waves from a Binary Black Hole Coalescence

Reference 49

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source=pdf_text observed=2026-08-07T00:25:53.284280Z digest=sha256:26a421eb2e3d22abe6eb0b1f17975388b611941c5fa2f3003b001c0818251664

Observation 017d4b24-0f7c-4411-8ea3-23396e13b3dc · outbound

This paper cites A simple model of complete precessing black-hole-binary gravitational waveforms.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge A simple model of complete precessing black-hole-binary gravitational waveforms

Reference 50

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source=pdf_text observed=2026-08-07T00:25:53.377425Z digest=sha256:6a5ce489c6324c002f04870aa3998ebeedaedcd69b8b4f5a5ad87e63e0abcc8b

Observation 1a861e1f-5ecc-4132-8aef-dd93a887d2e7 · outbound

This paper cites Bilby: A user-friendly Bayesian inference library for gravitational-wave astronomy.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Bilby: A user-friendly Bayesian inference library for gravitational-wave astronomy

Reference 51

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source=pdf_text observed=2026-08-07T00:25:53.473171Z digest=sha256:701cc8a30a60095b8f32aa1fbdfe2f9d3685f83f1798283595b1df061a4ee261

Observation 8074fb71-6fa4-45b6-bea9-e96aee164edb · outbound

This paper cites dynesty: A Dynamic Nested Sampling Package for Estimating Bayesian Posteriors and Evidences.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge dynesty: A Dynamic Nested Sampling Package for Estimating Bayesian Posteriors and Evidences

Reference 52

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source=pdf_text observed=2026-08-07T00:25:53.572712Z digest=sha256:bf51f2f2a687aba6fb08e9082c5180bd83078533220853a66512db863697b7a7

Observation 7210d41b-541b-4208-8430-b1e14091fd2b · outbound

This paper cites Modelling coloured residual noise in gravitational-wave signal processing.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Modelling coloured residual noise in gravitational-wave signal processing

Reference 53

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verified exact
local_arxiv, observed 2026-08-07T00:25:55.665570Z

Source-reported events for the cited work

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

source=pdf_text observed=2026-08-07T00:25:53.653411Z digest=sha256:5fb19257e77f04828d0cf2ed50d6245d824a2753d1c6c3589f46ae60e65aba83

Observation fed572ff-0226-4e3f-9a34-6b59eddd0e9a · outbound

This paper cites GW190521: tracing imprints of spin-precession on the most massive black hole binary.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge GW190521: tracing imprints of spin-precession on the most massive black hole binary

Reference 54

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source=pdf_text observed=2026-08-07T00:25:53.766301Z digest=sha256:3d340c831aa01948cfaa75c60e2f358ef4aa07267cb8fc3224111beb03c7ec33

Observation 350d1ab6-72c8-4b1c-b76c-39a1fa8fc8f9 · outbound

This paper cites Comparison between time-domain and frequency-domain Bayesian inferences to inspiral-merger-ringdown gravitational-wave signals.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Comparison between time-domain and frequency-domain Bayesian inferences to inspiral-merger-ringdown gravitational-wave signals

Reference 55

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Observation 23678d5f-d2f2-4d62-b47c-fce51d333975 · outbound

This paper cites Payne, C.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Payne, C

Reference 56

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Observation 9b13a347-f816-45fb-af96-20faabcae661 · outbound

This paper cites Zweizig and K.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Zweizig and K

Reference 57

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source=pdf_text observed=2026-08-07T00:25:54.113251Z digest=sha256:40b0d21e92009275b51c02b4a8aafe46bdf60134a15a924adf43e08d3587cbe9

Observation 04e392e8-b17b-48b0-ba6c-cd0a3c2785bc · outbound

This paper cites Fast and Accurate Inference on Gravitational Waves from Precessing Compact Binaries.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Fast and Accurate Inference on Gravitational Waves from Precessing Compact Binaries

Reference 58

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source=pdf_text observed=2026-08-07T00:25:54.279568Z digest=sha256:2b1b8800988d7b54d4f652c929ca8d839e99653664467a505e8208f7f5f40b1c

Observation e1331a77-08d6-48d4-b576-224e6e3b68ff · outbound

This paper cites PyROQ: a Python-based Reduced Order Quadrature Building Code for Fast Gravitational Wave Inference.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge PyROQ: a Python-based Reduced Order Quadrature Building Code for Fast Gravitational Wave Inference

Reference 59

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source=pdf_text observed=2026-08-07T00:25:54.384837Z digest=sha256:c36b84477060c413433ea59e062f00a3973931183c85d1698b3075a821a68fa0

Observation 79e9f3f2-ef40-4991-a967-e19999fd0cf3 · outbound

This paper cites Relative Binning and Fast Likelihood Evaluation for Gravitational Wave Parameter Estimation.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Relative Binning and Fast Likelihood Evaluation for Gravitational Wave Parameter Estimation

Reference 60

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source=pdf_text observed=2026-08-07T00:25:54.464780Z digest=sha256:cb1d97c36c37a118053fdf5fc18ddd6f44325b03fe81cc73243bc85a5f5093b3

Observation f35b46c7-d8cf-4678-9e1e-5940e97f9347 · outbound

This paper cites Heterodyned Likelihood for Rapid Gravitational Wave Parameter Inference.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Heterodyned Likelihood for Rapid Gravitational Wave Parameter Inference

Reference 61

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source=pdf_text observed=2026-08-07T00:25:54.552731Z digest=sha256:ce7f646449fa85526edf9ecabd341f17659592d884ac323991380c1ab6ced5bf

Observation d7387750-b4c5-4435-94bf-867965764d23 · outbound

This paper cites Accelerated parameter estimation in Bilby with relative binning.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Accelerated parameter estimation in Bilby with relative binning

Reference 62

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source=pdf_text observed=2026-08-07T00:25:54.620092Z digest=sha256:ff7e75c802dfbb4bf41dc523331b0bb969109086b8b1abf6e3579ab6a8144f1b

Observation 1c670235-159d-472c-94ee-1a8c8f9ca7c5 · outbound

This paper cites Rapid and accurate parameter inference for coalescing, precessing compact binaries.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Rapid and accurate parameter inference for coalescing, precessing compact binaries

Reference 63

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source=pdf_text observed=2026-08-07T00:25:54.676204Z digest=sha256:1371002ee3d0edb053d755a1673ec720c0faa3ede29b945d6b0b60aac672ab8b

Observation d32b92dd-dc7e-41c0-85e7-26e5b14a1072 · outbound

This paper cites Fast marginalization algorithm for optimizing gravitational wave detection, parameter estimation and sky localization.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Fast marginalization algorithm for optimizing gravitational wave detection, parameter estimation and sky localization

Reference 64

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source=pdf_text observed=2026-08-07T00:25:54.758073Z digest=sha256:30490f4e1501c66398059cc44a0035c39d2c50a9c995e41a7724ba9f7ea7293c

Observation 43992cc2-138e-483c-9d59-d381cdf39994 · outbound

This paper cites Real-time gravitational-wave science with neural posterior estimation.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Real-time gravitational-wave science with neural posterior estimation

Reference 65

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source=pdf_text observed=2026-08-07T00:25:54.848173Z digest=sha256:d5b85b972224536912337bda7f3f7586bb5dbb7daa4cab0d7f508cb4c08bcedf

Observation c2cf1915-d099-4c8e-a5db-5239cbcdee1b · outbound

This paper cites Rapid Likelihood Free Inference of Compact Binary Coalescences using Accelerated Hardware.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Rapid Likelihood Free Inference of Compact Binary Coalescences using Accelerated Hardware

Reference 66

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source=pdf_text observed=2026-08-07T00:25:54.940321Z digest=sha256:8d30d76b435b014f989450974afffd832b6e5734a6a218d1133cb6ec3e1eb35a

Observation c2aeb50e-a850-4868-8549-8253ece20cfd · outbound

This paper cites Importance nested sampling with normalising flows.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Importance nested sampling with normalising flows

Reference 67

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source=pdf_text observed=2026-08-07T00:25:55.001510Z digest=sha256:4476157c6f17608d416bd20c813154d4c93de31781807799161258b3ccc19869

Observation 3524e1bb-6d69-4710-acf5-93428a63ab97 · outbound

This paper cites Fast gravitational wave parameter estimation without compromises.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge Fast gravitational wave parameter estimation without compromises

Reference 68

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source=pdf_text observed=2026-08-07T00:25:55.123830Z digest=sha256:1cb8fbdf6b952b1232abdaf33c4256f068ba7e82d118b859b8017fbf63989883

Observation 3cfb6553-d307-4908-bae0-822b477031f8 · outbound

This paper cites NAUTILUS: boosting Bayesian importance nested sampling with deep learning.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge NAUTILUS: boosting Bayesian importance nested sampling with deep learning

Reference 69

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source=pdf_text observed=2026-08-07T00:25:55.213603Z digest=sha256:b71d4636b67e86d8381c40e5e47efb57cb4afa4115e20da13d8a6f90601d3db7

Observation 62bd0b6e-2f24-41fb-8403-7d9d1e7e3ea6 · outbound

This paper cites pocoMC: A Python package for accelerated Bayesian inference in astronomy and cosmology.

Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge pocoMC: A Python package for accelerated Bayesian inference in astronomy and cosmology

Reference 70

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source=pdf_text observed=2026-08-07T00:25:55.330085Z digest=sha256:52c275eec965972ecfe6010ef7030abb6b20b35771a1518f1b65fb5e3d357679

Pith citing papers

Observation 1bbfadcf-4f9d-4831-8828-091470a8bcdc · inbound

Probing the peak of star formation with the stochastic background of binary black hole mergers cites this paper.

Probing the peak of star formation with the stochastic background of binary black hole mergers Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge

Reference 44

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local_arxiv, observed 2026-08-06T22:25:05.022652Z

Source-reported events for the cited work

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

source=arxiv_source observed=2026-08-06T22:25:00.787399Z digest=sha256:c0ecb871ee569647c46c10c04a1d58934a63a40b5fdce126f7e1087b59d757c4

Observation dcee96ee-a61e-48ea-b365-a89a57791015 · inbound

All You Need is not $\Omega_\mathrm{gw}$: Beyond the Mean of the Cross-Correlation Estimator when Searching for an Astrophysical Gravitational-Wave Background cites this paper.

All You Need is not $\Omega_\mathrm{gw}$: Beyond the Mean of the Cross-Correlation Estimator when Searching for an Astrophysical Gravitational-Wave Background Progress toward the detection of the gravitational-wave background from stellar-mass binary black holes: a mock data challenge

Reference 19

Resolution
unresolved
no resolver link, observed 2026-08-12T05:54:22.454620Z

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Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-12T05:54:22.454620Z digest=sha256:c52e319435a2e51002112d2020842bbf14cd251b6efac2a0ab8291232768bbac