Cascades of high-energy SM particles in the primordial thermal plasma

Author:

Mukaida Kyohei,Yamada MasakiORCID

Abstract

Abstract High-energy standard model (SM) particles in the early Universe are generated by the decay of heavy long-lived particles. The subsequent thermalization occurs through the splitting of high-energy primary particles into lower-energy daughters in primordial thermal plasma. The principal example of such processes is reheating after inflation caused by the decay of inflatons into SM particles. Understanding of the thermalization at reheating is extremely important as it reveals the origin of the hot Universe, and could open up new mechanisms for generating dark matter and/or baryon asymmetry. In this paper, we investigate the thermalization of high-energy SM particles in thermal plasma, taking into account the Landau-Pomeranchuk-Migdal effect in the leading-log approximation. The whole SM particle content and all the relevant SM interactions are included for the first time, i.e., the full gauge interactions of SU(3)c×SU(2)L×U(1)Y and the top Yukawa interaction. The distribution function of each SM species is computed both numerically and analytically. We have analytically obtained the distribution function of each SM species after the first few splittings. Furthermore, we demonstrate that, after a sufficient number of splittings, the particle distributions are asymptotic to certain values at low momentum, independent of the high-energy particles injected by inflaton decay. The results are useful to calculate the DM abundance produced during the pre-thermal phase. An example is provided to illustrate a way to calculate the DM abundance from the scattering between the thermal plasma and high-energy particles in the cascade.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Effects of fragmentation on post-inflationary reheating;Journal of Cosmology and Astroparticle Physics;2023-12-01

2. Reheating process in the R 2 inflationary model with the baryogenesis scenario;Journal of Cosmology and Astroparticle Physics;2023-11-01

3. Thermalization in the presence of a time-dependent dissipation and its impact on dark matter production;Journal of High Energy Physics;2023-09-13

4. Formation of hot spots around small primordial black holes;Journal of Cosmology and Astroparticle Physics;2023-01-01

5. WIMPs during reheating;Journal of Cosmology and Astroparticle Physics;2022-12-01

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