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Multilevel and hierarchical Bayesian modeling of cosmic populations

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arxiv 1911.12337 v1 pith:VHAENDCI submitted 2019-11-27 astro-ph.IM stat.AP

classification astro-ph.IMstat.AP
keywords bayesianhierarchicalsurveyscorrectionscosmicmeasurementmodelingmodels
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Demographic studies of cosmic populations must contend with measurement errors and selection effects. We survey some of the key ideas astronomers have developed to deal with these complications, in the context of galaxy surveys and the literature on corrections for Malmquist and Eddington bias. From the perspective of modern statistics, such corrections arise naturally in the context of multilevel models, particularly in Bayesian treatments of such models: hierarchical Bayesian models. We survey some key lessons from hierarchical Bayesian modeling, including shrinkage estimation, which is closely related to traditional corrections devised by astronomers. We describe a framework for hierarchical Bayesian modeling of cosmic populations, tailored to features of astronomical surveys that are not typical of surveys in other disciplines. This thinned latent marked point process framework accounts for the tie between selection (detection) and measurement in astronomical surveys, treating selection and measurement error effects in a self-consistent manner.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 9 citations worldwide. Full citation record

  1. Diverse Morphologies of GRB X-Ray Plateaus within a Common Magnetar Framework

    astro-ph.HE 2026-07 conditional novelty 5.0 of 10

    A hierarchical fit of 185 GRB X-ray plateaus finds no statistical need for distinct magnetar populations behind rising, flat, and decaying plateau shapes.

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