论文标题

部分可观测时空混沌系统的无模型预测

Higgs boson induced reheating and ultraviolet frozen-in dark matter

论文作者

Ahmed, Aqeel, Grzadkowski, Bohdan, Socha, Anna

论文摘要

早期宇宙中的重新加热阶段是所有通货膨胀模型的重要组成部分,在此期间,不仅产生了标准模型(SM)量子,而且还可以阐明暗物质的产生。在这项工作中,我们探讨了一类重新加热模型,其中重新加热是由form $ g_ {h ϕ} m _ {hdaction $ g_ {\ rm pl} $ g_ {\ rm pl}■$ g_ {通货膨胀。假设Ifflaton作为背景字段,这种相互作用意味着Higgs Boson的$ ϕ $依赖性质量项以及对再加热效率的非平凡相位空间抑制。结果,再加热延长,SM热浴的最大温度降低。尤其是,由于$ ϕ $依赖性的希格斯玻色子质量的振荡导致损坏的和不间断的electroweak仪表对称性的阶段之间的定期过渡。这些快速相变的后果已详细研究。在存在充气背景的情况下,即$ g_ {h ϕ} = 0 $的纯粹重力再加热机制。事实证明,即使它可能在没有$ g_ {h ϕ} $的情况下解释了SM辐射的总产生,但在此工作中考虑的$ g_ {h ϕ} $的范围内,其对重新加热的贡献是替代的。作为暗物质候选者,已经考虑了一个巨大的亚伯利亚矢量玻色子,即$x_μ$。已经讨论了$x_μ$的各种生产机制,包括(i)(i)来自Efflaton背景的重力产生,(ii)通过DIM-5有效操作员从SM Quanta中进行引力冻结,(III)加速器衰减,以及(IV)HIGGS HIGGS Portal Freeze-In和Higgs通过DIM-6有效的操作员衰减。正确描述观察到的遗物丰度的参数已确定。

A reheating phase in the early universe is an essential part of all inflationary models during which not only the Standard Model (SM) quanta are produced but it can also shed light on the production of dark matter. In this work, we explore a class of reheating models where the reheating is induced by a cubic interaction of the inflaton $ϕ$ to the SM Higgs boson ${\textbf h}$ of the form $g_{hϕ} M_{\rm Pl} ϕ|{\textbf h}|^2$ adopting the $α$-attractor T-model of inflation. Assuming inflaton as a background field such interaction implies a $ϕ$-dependent mass term of the Higgs boson and a non-trivial phase-space suppression of the reheating efficiency. As a consequence, the reheating is prolonged and the maximal temperature of the SM thermal bath is reduced. In particular, due to oscillations of the inflaton field the $ϕ$-dependent Higgs boson mass results in periodic transitions between phases of broken and unbroken electroweak gauge symmetry. The consequences of these rapid phase transitions have been studied in detail. A purely gravitational reheating mechanism in the presence of the inflaton background, i.e., for $g_{hϕ}=0$, has also been investigated. It turned out that even though it may account for the total production of SM radiation in the absence of $g_{hϕ}$, its contribution to the reheating is subdominant for the range of $g_{hϕ}$ considered in this work. As a dark matter candidate, a massive Abelian vector boson, $X_μ$, has been considered. Various production mechanisms of $X_μ$ have been discussed including (i) purely gravitational production from the inflaton background, (ii) gravitational freeze-in from the SM quanta, (iii) inflaton decay through a dim-5 effective operator, and (iv) Higgs portal freeze-in and Higgs decay through a dim-6 effective operator. Parameters that properly describe the observed relic abundance have been determined.

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