English

A new way to test the WIMP dark matter models

Cosmology and Nongalactic Astrophysics 2021-09-15 v4 High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

In this paper, we investigate the possibility of testing the weakly interacting massive particle (WIMP) dark matter (DM) models by applying the simplest phenomenological model which introduces an interaction term between dark energy (DE) and WIMP DM, i.e., Q=3γDMHρDMQ = 3\gamma_{DM} H\rho_{DM}. In general, the coupling strength γDE\gamma_{DE} is close to 00 as the interaction between DE and WIMP DM is very weak, thus the effect of γDE\gamma_ {DE} on the evolution of YY associated with DM energy density can be safely neglected. Meanwhile, our numerical calculation also indicates that xf20x_f\approx20 is associated with DM freeze-out temperature, which is the same as the vanishing interaction scenario. As for DM relic density, it will be magnified by 23γDM2[2πgmDM3/(45s0xf3)]γDM\frac{2-3\gamma_{DM}}{2}[{2\pi g_* m_{DM}^3}/{(45 s_0 x_f^3})]^{\gamma_{DM}} times, which provides a new way to test WIMP DM models. As an example, we analyze the case in which WIMP DM is a scalar DM. (SGL+SNe+Hz) and (CMB+BAO+SNe) cosmological observations will give γDM=0.1340.069+0.17\gamma_{DM}=0.134^{+0.17}_{-0.069} and γDM=0.0008±0.0016\gamma_{DM}=-0.0008\pm0.0016, respectively. After further considering the constraints from DM direct detection experiment, DM indirect detection experiment, and DM relic density, we find that the allowed parameter space of the scalar DM model will be completely excluded for the former cosmological observations, while it will increase for the latter ones. Those two cosmological observations lead to an almost paradoxical conclusion. Therefore, one could expect more stringent constraints on the WMIP DM models, with the accumulation of more accurate cosmological observations in the near future.

Keywords

Cite

@article{arxiv.2011.11548,
  title  = {A new way to test the WIMP dark matter models},
  author = {Wei Cheng and Yuan He and Jin-Wang Diao and Yu Pan and Jun Zeng and Jia-Wei Zhang},
  journal= {arXiv preprint arXiv:2011.11548},
  year   = {2021}
}

Comments

23 pages, 7 figures

R2 v1 2026-06-23T20:27:02.302Z