论文标题

通过在黑暗时代相互作用的DM衰减/an灭的磁化IgM中的热SZ效应

Thermal SZ effect in a magnetized IGM dominated by interacting DM decay/annihilation during dark ages

论文作者

Pandey, Arun Kumar, Malik, Sunil

论文摘要

在宇宙黎明期间,对宇宙的热历史进行了充分的研究,对这个时代的研究可以在重组时代之前对宇宙的一些最有用的见解。它的确切建模和未来的高精度测量将是确定宇宙热史的宝贵工具。在目前的工作中,我们研究了通过双极和湍流衰变衰减磁场的IgM的热和电离历史,包括DM衰减/ni灭。所考虑的BDM交互横截面为$σ=σ_0v^{n} $的形式,其中$ n = -2 $和$ n = -4 $。在这项工作中,我们表明,在当前情况下,DM颗粒的衰减/an灭对低红移时温度和电离历史的影响很大。随着分数相互作用的概念的添加,该概念指出,如果DM颗粒的一部分与重子相互作用,则重子的温度和电离部分表明,对与Baryons相互作用的DM颗粒百分比有很强的依赖性。我们还研究了当前情况对热Sunyaev-Zeldovich(TSZ)效应的有趣后果。我们表明,在当前DM衰减/歼灭方案中,平均$ y- $参数的绝对值的最高值很好地属于从Planck,Firas和Pixie等实验数据中得出的值。后来,我们计算出源自深色光子的普通磁场上的结合。

During cosmic dawn, the thermal history of the universe is well studied, and a study of this era can give us some of the most useful insight into the universe before the recombination epoch. Its precise modeling and future high-precision measurements will be a valuable tool for determining the thermal history of the universe. In the present work, we study the thermal and ionization history of IGM in the presence of decaying magnetic fields via ambipolar and turbulent decay, Baryon-Dark matter (BDM) interaction, including the DM decay/annihilation. The BDM interaction cross-sections considered are of the form $σ=σ_0 v^{n}$, where $n=-2$ and $n=-4$. In this work, we show that in the current scenario, the decay/annihilation of the DM particles have a considerable impact on the temperature and ionization histories at low redshift. With the addition of the concept of fractional interaction, which states that if a fraction of the DM particles interacts with the baryons, the temperature and ionization fraction of the baryons show a strong dependence on the percentage of DM particles interacting with the baryons. We have also studied the interesting consequences of the present scenario on the thermal Sunyaev-Zeldovich (tSZ) effect. We show that the highest value of the absolute value of the mean $y-$parameter in the current DM decay/annihilation scenario is well within the values derived from experimental data such as PLANCK, FIRAS, and PIXIE. Later we calculate the bound on the ordinary magnetic fields originating from the Dark photons.

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