Forecasts for lifetime and fraction of Decaying Dark Matter based on redshift distortions from Euclid and BOSS

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Hauptverfasser: Juárez-Jiménez, Javier, Avilez-López, Ana A.
Format: Preprint
Veröffentlicht: 2025
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author Juárez-Jiménez, Javier
Avilez-López, Ana A.
author_facet Juárez-Jiménez, Javier
Avilez-López, Ana A.
contents In this work we forecast constraints on models of decaying dark matter (DCDM) by using redshift-space-distortion (RSD) measurements implemented in a Fisher information matrix. In particular, we focus on the fraction of unstable dark matter, $α_{\mathrm{dcdm}}$ respect to the ordinary CDM component, and the decay rate, $Γ_{\mathrm{dcdm}}$ as the key parameters of the model. Fiducial values are derived from a MontePython MCMC analysis. The derivatives of the growth-related observable, $fσ_8(z)$ with respect to the parameters are numerically around the fiducial model. For the Fisher analysis, we employ mock data designed for upcoming surveys, particularly Euclid and BOSS, where RSD measurements yield constraints on $fσ_8.$ Our results show that when both stable and unstable components are allowed, constrains on the DCDM lifetime remain weak, with $τ_{\mathrm{dcdm}}>1.18$ Gyr. In the limiting case of fully unstable dark matter ($α_{\mathrm{dcdm}}=1$), the uncertainty improves to $τ_{\mathrm{dcdm}}>235.89$ Gyr. Our findings highlight the potential of RSD probes in testing and complementing decaying dark matter scenarios.
format Preprint
id arxiv_https___arxiv_org_abs_2512_03348
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Forecasts for lifetime and fraction of Decaying Dark Matter based on redshift distortions from Euclid and BOSS
Juárez-Jiménez, Javier
Avilez-López, Ana A.
Cosmology and Nongalactic Astrophysics
In this work we forecast constraints on models of decaying dark matter (DCDM) by using redshift-space-distortion (RSD) measurements implemented in a Fisher information matrix. In particular, we focus on the fraction of unstable dark matter, $α_{\mathrm{dcdm}}$ respect to the ordinary CDM component, and the decay rate, $Γ_{\mathrm{dcdm}}$ as the key parameters of the model. Fiducial values are derived from a MontePython MCMC analysis. The derivatives of the growth-related observable, $fσ_8(z)$ with respect to the parameters are numerically around the fiducial model. For the Fisher analysis, we employ mock data designed for upcoming surveys, particularly Euclid and BOSS, where RSD measurements yield constraints on $fσ_8.$ Our results show that when both stable and unstable components are allowed, constrains on the DCDM lifetime remain weak, with $τ_{\mathrm{dcdm}}>1.18$ Gyr. In the limiting case of fully unstable dark matter ($α_{\mathrm{dcdm}}=1$), the uncertainty improves to $τ_{\mathrm{dcdm}}>235.89$ Gyr. Our findings highlight the potential of RSD probes in testing and complementing decaying dark matter scenarios.
title Forecasts for lifetime and fraction of Decaying Dark Matter based on redshift distortions from Euclid and BOSS
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2512.03348