English

Constraining dark matter decays with cosmic microwave background and weak lensing shear observations

Cosmology and Nongalactic Astrophysics 2023-04-19 v2

Abstract

From observations at low and high redshifts, it is well known that the bulk of dark matter (DM) has to be stable or at least very long-lived. However, the possibility that a small fraction of DM is unstable or that all DM decays with a half-life time (τ\tau) significantly longer than the age of the Universe is not ruled out. One-body decaying dark matter (DDM) consists of a minimal extension to the Λ\LambdaCDM model. It causes a modification of the cosmic growth history as well as a suppression of the small-scale clustering signal, providing interesting consequences regarding the S8S_8 tension, which is the observed difference in the clustering amplitude between weak-lensing (WL) and cosmic microwave background (CMB) observations. In this paper, we investigate models in which a fraction or all DM decays into radiation, focusing on the long-lived regime, that is, τH01\tau \gtrsim H_0^{-1} ( H01H_0^{-1} being the Hubble time). We used WL data from the Kilo-Degree Survey (KiDS) and CMB data from Planck. First, we confirm that this DDM model cannot alleviate the S8S_8 difference. We then show that the most constraining power for DM decay does not come from the nonlinear WL data, but from CMB via the integrated Sachs-Wolfe effect. From the CMB data alone, we obtain constraints of τ288\tau \geq 288~Gyr if all DM is assumed to be unstable, and we show that a maximum fraction of f=0.07f=0.07 is allowed to decay assuming the half-life time to be comparable to (or shorter than) one Hubble time. The constraints from the KiDS-1000 WL data are significantly weaker, τ60\tau \geq 60~Gyr and f<0.34f<0.34. Combining the CMB and WL data does not yield tighter constraints than the CMB alone, except for short half-life times, for which the maximum allowed fraction becomes f=0.03f=0.03. All limits are provided at the 95% confidence level.

Keywords

Cite

@article{arxiv.2211.14334,
  title  = {Constraining dark matter decays with cosmic microwave background and weak lensing shear observations},
  author = {Jozef Bucko and Sambit K. Giri and Aurel Schneider},
  journal= {arXiv preprint arXiv:2211.14334},
  year   = {2023}
}
R2 v1 2026-06-28T07:13:08.176Z