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首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >keV sterile neutrino dark matter from singlet scalar decays: basic concepts and subtle features
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keV sterile neutrino dark matter from singlet scalar decays: basic concepts and subtle features

机译:单峰标量衰变的keV无菌中微子暗物质:基本概念和微妙特征

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We perform a detailed and illustrative study of the production of keV sterile neutrino Dark Matter (DM) by decays of singlet scalars in the early Universe. In the current study we focus on providing a clear and general overview of this production mechanism. For the first time we study all regimes possible on the level of momentum distribution functions, which we obtain by solving a system of Boltzmann equations. These quantities contain the full information about the production process, which allows us to not only track the evolution of the DM generation but to also take into account all bounds related to the spectrum, such as constraints from structure formation or from avoiding too much dark radiation. In particular we show that this simple production mechanism can, depending on the regime, lead to strongly non-thermal DM spectra which may even feature more than one peak in the momentum distribution. These cases could have particularly interesting consequences for cosmological structure formation, as their analysis requires more refined tools than the simplistic estimate using the free-streaming horizon. Here we present the mechanism including all concepts and subtleties involved, for now using the assumption that the effective number of relativistic degrees of freedom is constant during DM production, which is applicable in a significant fraction of the parameter space. This allows us to derive analytical results to back up our detailed numerical computations, thus leading to the most comprehensive picture of keV sterile neutrino DM production by singlet scalar decays that exists up to now.
机译:我们对早期宇宙中单线态标量的衰变产生keV无菌中微子暗物质(DM)的生产进行了详细的说明性研究。在当前的研究中,我们着重于对这种生产机制进行清晰而全面的概述。我们首次研究了通过求解玻尔兹曼方程组获得的动量分布函数水平上的所有可能状态。这些数量包含有关生产过程的全部信息,这使我们不仅可以跟踪DM生成的演变,还可以考虑与光谱有关的所有范围,例如来自结构形成的限制或避免了过多的暗辐射。尤其是,我们表明,这种简单的生产机制可能会根据机制而导致强烈的非热DM光谱,甚至可能在动量分布中出现多个峰。这些情况对于宇宙结构的形成可能会产生特别有趣的后果,因为与使用自由流视界进行的简单估算相比,它们的分析需要更多完善的工具。在这里,我们提出了一种机制,其中包括所有涉及的概念和微妙之处,现在使用这样一种假设,即相对论自由度的有效数量在DM生产期间是恒定的,这适用于很大一部分参数空间。这使我们能够得出分析结果来支持我们的详细数值计算,从而得出迄今为止最完整的通过单重态标量衰变产生keV无菌中微子DM的情况。

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