首页> 外文期刊>The European physical journal, B. Condensed matter physics >A unified grand canonical description of the nonextensive thermostatistics of the quantum gases: Fractal and fractional approach
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A unified grand canonical description of the nonextensive thermostatistics of the quantum gases: Fractal and fractional approach

机译:量子气体非广义热统计的统一大正则描述:分形和分数方法

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摘要

In this paper, the particles of quantum gases, that is, basons and fermions are regarded as g-ons which obey fractional exclusion statistics. With this point of departure the thermostatistical relations concerning the Bose and Fermi systems are unified under the g-on formulation where a fractal approach is adopted. The fractal inspired entropy, the partition function, distribution function, the thermodynamics potential and the total number of g-ons have been found for a grand canonical g-on system. It is shown that from the g-on formulation; by a suitable choice of the parameters of the nonextensivity q, the parameter of the fractional exclusion statistics g, nonextensive Tsallis (q not= 1) as well as extensive (q = 1) standard thermostatistical relations of the Bose and Fermi systems are recovered.
机译:在本文中,量子气体粒子,即玻色子和费米子,被视为服从分数排斥统计的g-on。从这一出发点出发,采用分形方法的g-on公式将有关Bose和Fermi系统的热统计关系统一起来。分形启发熵,分配函数,分布函数,热力学潜能和gon的总数已被发现为一个大的规范g-on系统。从g-on配方可以看出;通过适当选择非扩展性q的参数,可以恢复Bose和Fermi系统的分数排除统计g,非扩展Tsallis(q not = 1)以及广泛(q = 1)标准热统计关系的参数。

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