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A fractional mathematical approach to the distribution functions of quantum gases: Cosmic Microwave Background Radiation problem is revisited

机译:量子气体分布函数的分数数学方法:宇宙微波背景辐射问题

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摘要

Efforts on the fundamentals of the nonextensive thermostatistical formulations of the realistic description of the physical systems have always been underway.In this context,the quantum systems of bosons and fermions are taken into consideration as g-ons.A new formalism of the unified distribution functions has been introduced using a fractional mathematical approach.With the purpose of verification of the theory,blackbody radiation problem has been investigated by making use of the generalized fractional Planck's distribution.In this context,the observed Cosmic Microwave Background Radiation(CMBR)energy density could be obtained exactly within nonextensive thermostatistical approach for the value alpha=0.999983 of the order of the fractional derivative and for the blackbody temperature T=2.72818 K.
机译:一直在努力对物理系统进行逼真的描述的非广义热统计公式的基础上。在这种情况下,玻色子和费米子的量子系统被视为g-on。统一分布函数的新形式形式本文采用分数数学方法进行了介绍。为了验证这一理论,利用广义分数普朗克分布研究了黑体辐射问题。在这种情况下,观测到的宇宙微波背景辐射(CMBR)能量密度可以在分数阶导数的值α= 0.999983且黑体温度T = 2.72818 K的情况下,可以完全在非扩展的热统计方法中获得。

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