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Milky Way satellite census. IV. Constraints on decaying dark matter from observations of Milky Way satellite galaxies

Author
Mau, S.; DES Collaboration; García-Bellido Capdevila, Juanuntranslated
Entity
UAM. Departamento de Física Teórica
Publisher
American Astronomical Society
Date
2022-06-20
Citation
10.3847/1538-4357/ac6e65
Astrophysical Journal 932.2 (2022): 128
 
 
 
ISSN
0004-637X (print); 1538-4357 (online)
DOI
10.3847/1538-4357/ac6e65
Project
Gobierno de España. ESP2017-89838; Gobierno de España. PGC2018-094773; Gobierno de España. PGC2018-102021; Gobierno de España. SEV-2016-0588; Gobierno de España. SEV-2016-0597; Gobierno de España. MDM-2015-0509; info:eu-repo/grantAgreement/EC/FP7/240672/EU//COGS; info:eu-repo/grantAgreement/EC/FP7/291329/EU//TESTDE; info:eu-repo/grantAgreement/EC/FP7/306478/EU//COSMICDAWN
Editor's Version
https://doi.org/10.3847/1538-4357/ac6e65
Subjects
Dark Matter; Dwarf Galaxies; Halo; Física
URI
http://hdl.handle.net/10486/706416
Note
Artículo escrito por un elevado número de autores, solo se referencian el que aparece en primer lugar, el nombre del grupo de colaboración, si le hubiere, y los autores pertenecientes a la UAM
Rights
© 2022 The Author(s)

Licencia Creative Commons
Esta obra está bajo una Licencia Creative Commons Atribución 4.0 Internacional.

Abstract

We use a recent census of the Milky Way (MW) satellite galaxy population to constrain the lifetime of particle dark matter (DM). We consider two-body decaying dark matter (DDM) in which a heavy DM particle decays with lifetime τ comparable to the age of the universe to a lighter DM particle (with mass splitting ϵ) and to a dark radiation species. These decays impart a characteristic "kick velocity,"V kick = ϵc, on the DM daughter particles, significantly depleting the DM content of low-mass subhalos and making them more susceptible to tidal disruption. We fit the suppression of the present-day DDM subhalo mass function (SHMF) as a function of τ and V kick using a suite of high-resolution zoom-in simulations of MW-mass halos, and we validate this model on new DDM simulations of systems specifically chosen to resemble the MW. We implement our DDM SHMF predictions in a forward model that incorporates inhomogeneities in the spatial distribution and detectability of MW satellites and uncertainties in the mapping between galaxies and DM halos, the properties of the MW system, and the disruption of subhalos by the MW disk using an empirical model for the galaxy-halo connection. By comparing to the observed MW satellite population, we conservatively exclude DDM models with τ < 18 Gyr (29 Gyr) for V kick = 20 kms-1 (40 kms-1) at 95% confidence. These constraints are among the most stringent and robust small-scale structure limits on the DM particle lifetime and strongly disfavor DDM models that have been proposed to alleviate the Hubble and S 8 tensions
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Google™ Scholar:Mau, S. - DES Collaboration - García-Bellido Capdevila, Juan

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  • Producción científica en acceso abierto de la UAM [16828]

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