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Connecting CMB anisotropy and cold dark matter phenomenology via reheating

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arxiv 1801.03059 v3 pith:YOONN2TC submitted 2018-01-09 hep-ph gr-qc

classification hep-phgr-qc
keywords darkmatterreheatingphenomenologyanisotropyinflationarypowerproperties
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Understanding the properties of dark matter has proved to be one of the most challenging problems of particle phenomenology. In this paper, we have tried to understand the phenomenology of dark matter in light of very well understood properties of cosmic microwave background (CMB) anisotropy. To connect these two, inflation and its subsequent evolution known as the reheating phase play the important role. Following the previous analysis, we first established a one-to-one correspondence between the CMB power spectrum and the reheating temperature assuming the perturbative reheating scenario. Further by incorporating a possible dark matter candidate through the radiation annihilation process during reheating and the current value of dark matter abundance, we constrain the dark matter parameter space through the inflationary power spectrum for different inflationary models.

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Cited by 1 Pith paper

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  1. Constraining Nonthermal Dark Matter's Impact on the Matter Power Spectrum

    astro-ph.CO 2019-08 conditional novelty 6.0 of 10

    Nonthermal dark matter produced relativistically in an early matter-dominated era remains mostly relativistic at reheating, so free streaming suppresses small-scale structure and Lyman-alpha plus Milky Way satellite d...

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