论文标题

Saha在早期宇宙中的离子化的非高斯影响

Non-Gaussian Effects of the Saha's Ionization in the Early Universe

论文作者

Sales, L. L., Carvalho, F. C., Bento, E. P., Souza, H. T. C. M.

论文摘要

Tsallis的恒温下,由于其在描述表现出异常热力学特性的现象方面的成功,因此受到了越来越多的关注。在这种情况下,广义的SAHA方程必须遵循物质和辐射的普遍热平衡的条件。目前的工作旨在通过Tsallis统计数据探索非高斯对Saha电离的影响。为此,我们考虑了非高斯费米 - 迪拉克分布的数量密度,然后为宇宙重组设置了SAHA方程。结果,我们强调了两个新的非高斯效应:$ i $)两个通用的化学平衡条件,一个针对相对论政权,另一个用于非偏见主义。和$ ii $)氢绑定$ q $ - 能量。我们证明,要产生绑定能的平稳变化,$ a $参数必须很小。我们还表明,结合$ Q $能量围绕标准结合能的值表现出对称行为。此外,我们使用了$ Q $ - 能量来访问其他氢能水平,并确定了$ a $参数的值,该$ a $参数可以访问这些水平及其与温度的关系。最后,我们采用了这些结果来检查氘瓶颈,重组和粒子抗颗粒过量的非高斯效应。

Tsallis' thermostatistical has received increasing attention due to its success in describing phenomena that manifest unusual thermodynamic properties. In this context, the generalized Saha equation must follow a condition of generalized thermal equilibrium of matter and radiation. The present work aims to explore the non-Gaussian effects on Saha's ionization via Tsallis statistics. To accomplish this, we generalized the number density taking into account a non-Gaussian Fermi-Dirac distribution, and then set out the Saha equation for the cosmological recombination. As a result, we highlight two new non-Gaussian effects: $i$) two generalized chemical equilibrium conditions, one for the relativistic regime and the other for the non-relativistic one; and $ii$) the hydrogen binding $q$-energy. We demonstrated that to yields smooth shifts in the binding energy, the $a$-parameter must be very small. We also showed that binding $q$-energy exhibits symmetrical behavior around the value of the standard binding energy. Besides, we used the $q$-energy in order to access other hydrogen energy levels, and we ascertained the values of the $a$-parameter that access those levels and their relationship to temperature. Finally, we employed these results to examine the non-Gaussian effects of the deuterium bottleneck, recombination and the particle anti-particle excess.

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