English

Inferring kilonova population properties with a hierarchical Bayesian framework I : Non-detection methodology and single-event analyses

Instrumentation and Methods for Astrophysics 2022-02-02 v2 High Energy Astrophysical Phenomena

Abstract

We present nimbus{\tt nimbus} : a hierarchical Bayesian framework to infer the intrinsic luminosity parameters of kilonovae (KNe) associated with gravitational-wave (GW) events, based purely on non-detections. This framework makes use of GW 3-D distance information and electromagnetic upper limits from multiple surveys for multiple events, and self-consistently accounts for finite sky-coverage and probability of astrophysical origin. The framework is agnostic to the brightness evolution assumed and can account for multiple electromagnetic passbands simultaneously. Our analyses highlight the importance of accounting for model selection effects, especially in the context of non-detections. We show our methodology using a simple, two-parameter linear brightness model, taking the follow-up of GW190425 with the Zwicky Transient Facility (ZTF) as a single-event test case for two different prior choices of model parameters -- (i) uniform/uninformative priors and (ii) astrophysical priors based on surrogate models of Monte Carlo radiative transfer simulations of KNe. We present results under the assumption that the KN is within the searched region to demonstrate functionality and the importance of prior choice. Our results show consistency with simsurvey{\tt simsurvey} -- an astronomical survey simulation tool used previously in the literature to constrain the population of KNe. While our results based on uniform priors strongly constrain the parameter space, those based on astrophysical priors are largely uninformative, highlighting the need for deeper constraints. Future studies with multiple events having electromagnetic follow-up from multiple surveys should make it possible to constrain the KN population further.

Cite

@article{arxiv.2107.07129,
  title  = {Inferring kilonova population properties with a hierarchical Bayesian framework I : Non-detection methodology and single-event analyses},
  author = {Siddharth R. Mohite and Priyadarshini Rajkumar and Shreya Anand and David L. Kaplan and Michael W. Coughlin and Ana Sagués-Carracedo and Muhammed Saleem and Jolien Creighton and Patrick R. Brady and Tomás Ahumada and Mouza Almualla and Igor Andreoni and Mattia Bulla and Matthew J. Graham and Mansi M. Kasliwal and Stephen Kaye and Russ R. Laher and Kyung Min Shin and David L. Shupe and Leo P. Singer},
  journal= {arXiv preprint arXiv:2107.07129},
  year   = {2022}
}

Comments

18 pages, 5 figures, accepted for publication in ApJ

R2 v1 2026-06-24T04:13:02.632Z