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Paper Citation Record · LEDGER

Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

As of 8 August 2026, this Paper Citation Record lists 0 of 0 outbound references and 33 inbound Pith citation observations for arXiv:2204.00461.

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pith.paper-citation-record.v1
2204.00461 v1

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Pith citing papers itemized under the disclosed page cap.

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Outbound references

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Pith citing papers

Observation 0cc0b19d-ca31-474b-92e8-5373d49433d3 · inbound

Inferring the pair-instability mass gap from gravitational wave data cites this paper.

Inferring the pair-instability mass gap from gravitational wave data Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 108

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Observation 6acf847b-a45b-4ee8-9807-dad3273b3ebc · inbound

Hiding Out at the Low End: No Gap and a Peak in the Black-Hole Mass Spectrum cites this paper.

Hiding Out at the Low End: No Gap and a Peak in the Black-Hole Mass Spectrum Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 23

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Observation 5cd74ac9-ef0b-402b-bb67-b83e057f9bd2 · inbound

Comparing astrophysical models to gravitational-wave data in the observable space cites this paper.

Comparing astrophysical models to gravitational-wave data in the observable space Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 64

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Observation 2bf6daca-7f00-4057-a501-3ba9d217b2d4 · inbound

Spectral siren cosmology from gravitational-wave observations in GWTC-4.0 cites this paper.

Spectral siren cosmology from gravitational-wave observations in GWTC-4.0 Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 20

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Observation 3b89bdbe-e4a7-4ceb-8eb8-c3d42237b9d8 · inbound

Evidence of the pair instability gap from black hole masses cites this paper.

Evidence of the pair instability gap from black hole masses Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 102

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Observation 9c2fbfc4-68bc-4bc7-8bfc-4ba60299c7b5 · inbound

Gravitational-wave constraints on the pair-instability mass gap and nuclear burning in massive stars cites this paper.

Gravitational-wave constraints on the pair-instability mass gap and nuclear burning in massive stars Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 85

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Observation f7e3c691-4b2b-4f41-ab4f-f2e141deecad · inbound

When (not) to trust Monte Carlo approximations for hierarchical Bayesian inference cites this paper.

When (not) to trust Monte Carlo approximations for hierarchical Bayesian inference Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 66

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Observation 8db1b8bc-3d4b-47c6-8340-7d18ddb20cac · inbound

An Implementation to Identify the Properties of Multiple Population of Gravitational Wave Sources cites this paper.

An Implementation to Identify the Properties of Multiple Population of Gravitational Wave Sources Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 84

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Observation 5050a9b8-2b67-4147-b383-0581e31d4de1 · inbound

The impact of precession and higher-order multipoles for gravitational wave cosmological inference cites this paper.

The impact of precession and higher-order multipoles for gravitational wave cosmological inference Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 157

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Observation 610004f1-d4e5-4853-b033-34e44767881f · inbound

Characterizing Binary Black Hole Subpopulations in GWTC-4 with Binned Gaussian Processes: On the Origins of the $35M_{\odot}$ Peak cites this paper.

Characterizing Binary Black Hole Subpopulations in GWTC-4 with Binned Gaussian Processes: On the Origins of the $35M_{\odot}$ Peak Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 43

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Observation 0321596e-f8ee-4e10-8195-12e2f248d9a1 · inbound

Signatures of a subpopulation of hierarchical mergers in the GWTC-4 gravitational-wave dataset cites this paper.

Signatures of a subpopulation of hierarchical mergers in the GWTC-4 gravitational-wave dataset Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 119

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Observation 916655bf-c739-46ae-8238-1f7cfd16714f · inbound

Signatures of a subpopulation of hierarchical mergers in the GWTC-4 gravitational-wave dataset cites this paper.

Signatures of a subpopulation of hierarchical mergers in the GWTC-4 gravitational-wave dataset Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 119

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Observation 56a3e8fc-51c4-4a7d-b185-4fb874ef3219 · inbound

Reconsidering the consistent use of precessing, higher order multipole models for gravitational wave analyses cites this paper.

Reconsidering the consistent use of precessing, higher order multipole models for gravitational wave analyses Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 46

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Observation 5efc3f67-8c2b-4a92-ae7a-0841b294f094 · inbound

Measurement prospects for the pair-instability mass cutoff with gravitational waves cites this paper.

Measurement prospects for the pair-instability mass cutoff with gravitational waves Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 108

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Observation be29beae-e14d-4d4f-94d4-014ad09783bb · inbound

Posterior Predictive Checks for Gravitational-wave Populations: Limitations and Improvements cites this paper.

Posterior Predictive Checks for Gravitational-wave Populations: Limitations and Improvements Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 157

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Observation 8ae42e7f-eeed-4fa5-b4eb-19b81dcacdf5 · inbound

Second-Generation Mass Peak in the Gravitational-Wave Population as a Probe of Globular Clusters cites this paper.

Second-Generation Mass Peak in the Gravitational-Wave Population as a Probe of Globular Clusters Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 109

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Observation 9e6386e2-c069-4747-afff-9a1c96f2e3ee · inbound

Gravitational-wave astronomy requires population-informed parameter estimation cites this paper.

Gravitational-wave astronomy requires population-informed parameter estimation Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 39

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Gravitational-wave astronomy requires population-informed parameter estimation cites this paper.

Gravitational-wave astronomy requires population-informed parameter estimation Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 39

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No model-independent evidence for a peak in binary black hole spin (mis)alignments cites this paper.

No model-independent evidence for a peak in binary black hole spin (mis)alignments Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 29

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Searches for Binary Mergers with Sub-solar Mass Components in Data from the First Part of LIGO--Virgo--KAGRA's Fourth Observing Run cites this paper.

Searches for Binary Mergers with Sub-solar Mass Components in Data from the First Part of LIGO--Virgo--KAGRA's Fourth Observing Run Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 61

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Searches for Binary Mergers with Sub-solar Mass Components in Data from the First Part of LIGO--Virgo--KAGRA's Fourth Observing Run cites this paper.

Searches for Binary Mergers with Sub-solar Mass Components in Data from the First Part of LIGO--Virgo--KAGRA's Fourth Observing Run Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 2022

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How do the LIGO-Virgo-KAGRA's Heavy Black Holes Form? No evidence for core-collapse Intermediate-mass black holes in GWTC-4 cites this paper.

How do the LIGO-Virgo-KAGRA's Heavy Black Holes Form? No evidence for core-collapse Intermediate-mass black holes in GWTC-4 Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 181

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End-to-End Population Inference from Gravitational-Wave Strain using Transformers cites this paper.

End-to-End Population Inference from Gravitational-Wave Strain using Transformers Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 10

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Radio sirens: inferring $H_0$ with binary black holes and neutral hydrogen in the era of the Einstein Telescope and the SKA Observatory cites this paper.

Radio sirens: inferring $H_0$ with binary black holes and neutral hydrogen in the era of the Einstein Telescope and the SKA Observatory Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 70

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Gravitational-wave constraints on $H_0$ are robust to (putative) redshift evolution in the binary black hole mass spectrum at current sensitivity Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 44

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Constraining Gravitational Wave Memory with Hierarchical Inference cites this paper.

Constraining Gravitational Wave Memory with Hierarchical Inference Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 143

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BBH-Genesis: Disentangling Binary Black Hole Formation Channels with GWTC-4 cites this paper.

BBH-Genesis: Disentangling Binary Black Hole Formation Channels with GWTC-4 Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 31

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Observation 265ea8b2-8849-424e-9c60-928fc8bda7cb · inbound

Mapping the star formation peak with LIGO A# and Next-Generation detectors cites this paper.

Mapping the star formation peak with LIGO A# and Next-Generation detectors Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 7

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Observation edef8680-3d7f-4e79-9c64-85089678bd71 · inbound

Evidence for additional structure in the effective spin distribution hints at multiple formation pathways in GWTC-5.0 cites this paper.

Evidence for additional structure in the effective spin distribution hints at multiple formation pathways in GWTC-5.0 Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 123

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Observation 925c834e-6dd8-4fa0-a00c-04bbcfc4ef50 · inbound

Fortifying gravitational-wave population inference with normalizing flows cites this paper.

Fortifying gravitational-wave population inference with normalizing flows Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 25

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Observation 81116a1a-e2ee-407b-a882-532c9077926f · inbound

The Chirp-Mass Ladder: A New Rung Emerges cites this paper.

The Chirp-Mass Ladder: A New Rung Emerges Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 128

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Observation 082da64e-7eee-454f-9e11-d4afb07e1427 · inbound

Joint population and strong-lensing inference for resolved gravitational-wave events probes the black-hole merger rate beyond the peak of star formation cites this paper.

Joint population and strong-lensing inference for resolved gravitational-wave events probes the black-hole merger rate beyond the peak of star formation Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 58

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arxiv_id, observed 2026-06-30T14:34:46.180976Z

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Observation a963e9ed-5a83-4212-a72f-a62c430edd9d · inbound

Distinct spin properties and astrophysical origin of low mass binary black holes in gravitational wave data cites this paper.

Distinct spin properties and astrophysical origin of low mass binary black holes in gravitational wave data Precision Requirements for Monte Carlo Sums within Hierarchical Bayesian Inference

Reference 39

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arxiv_id, observed 2026-07-02T07:56:46.882738Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.

source=arxiv_source observed=2026-07-02T07:55:37.395171Z digest=sha256:9cd6811c616d6a813dafe02937e0ea92dc86499acb87dc3521edd498b4756e5a