GammaBayes: a Bayesian pipeline for dark matter detection with CTA

Fuente: arXiv
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Autori principali: Pinchbeck, Liam, Thrane, Eric, Balazs, Csaba
Natura: Preprint
Pubblicazione: 2024
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author Pinchbeck, Liam
Thrane, Eric
Balazs, Csaba
author_facet Pinchbeck, Liam
Thrane, Eric
Balazs, Csaba
contents We present GammaBayes, a Bayesian Python package for dark matter detection with the Cherenkov Telescope Array (CTA). GammaBayes takes as input the CTA measurements of gamma rays and a user-specified dark-matter particle model. It outputs the posterior distribution for parameters of the dark-matter model including the velocity-averaged cross section for dark-matter self interactions $\langleσv\rangle$ and the dark-matter mass $m_χ$. It also outputs the Bayesian evidence, which can be used for model selection. We demonstrate GammaBayes using 525 hours of simulated data, corresponding to $10^8$ observed gamma-ray events. The vast majority of this simulated data consists of noise, but $100000$ events arise from the annihilation of scalar singlet dark matter with $m_χ= 1$ TeV. We recover the dark matter mass within a 95% credible interval of $m_χ\sim 0.96-1.07$ TeV. Meanwhile, the velocity averaged cross section is constrained to $\langleσv\rangle \sim 1.4-2.1\times10^{-25}$ cm$^3$ s$^{-1}$ (95% credibility). This is equivalent to measuring the number of dark-matter annihilation events to be $N_S \sim 1.1_{-0.2}^{+0.2} \times 10^5$. The no-signal hypothesis $\langle σv \rangle=0$ is ruled out with about $5σ$ credibility. We discuss how GammaBayes can be extended to include more sophisticated signal and background models and the computational challenges that must be addressed to facilitate these upgrades. The source code is publicly available at https://github.com/lpin0002/GammaBayes.
format Preprint
id arxiv_https___arxiv_org_abs_2401_13876
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle GammaBayes: a Bayesian pipeline for dark matter detection with CTA
Pinchbeck, Liam
Thrane, Eric
Balazs, Csaba
High Energy Astrophysical Phenomena
We present GammaBayes, a Bayesian Python package for dark matter detection with the Cherenkov Telescope Array (CTA). GammaBayes takes as input the CTA measurements of gamma rays and a user-specified dark-matter particle model. It outputs the posterior distribution for parameters of the dark-matter model including the velocity-averaged cross section for dark-matter self interactions $\langleσv\rangle$ and the dark-matter mass $m_χ$. It also outputs the Bayesian evidence, which can be used for model selection. We demonstrate GammaBayes using 525 hours of simulated data, corresponding to $10^8$ observed gamma-ray events. The vast majority of this simulated data consists of noise, but $100000$ events arise from the annihilation of scalar singlet dark matter with $m_χ= 1$ TeV. We recover the dark matter mass within a 95% credible interval of $m_χ\sim 0.96-1.07$ TeV. Meanwhile, the velocity averaged cross section is constrained to $\langleσv\rangle \sim 1.4-2.1\times10^{-25}$ cm$^3$ s$^{-1}$ (95% credibility). This is equivalent to measuring the number of dark-matter annihilation events to be $N_S \sim 1.1_{-0.2}^{+0.2} \times 10^5$. The no-signal hypothesis $\langle σv \rangle=0$ is ruled out with about $5σ$ credibility. We discuss how GammaBayes can be extended to include more sophisticated signal and background models and the computational challenges that must be addressed to facilitate these upgrades. The source code is publicly available at https://github.com/lpin0002/GammaBayes.
title GammaBayes: a Bayesian pipeline for dark matter detection with CTA
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2401.13876