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首页> 外文期刊>Journal of Mathematical Sciences >THERMODYNAMIC PRESSURE AND ITS FLUCTUATIONS IN A CLASSICAL IDEAL GAS OF RELATIVISTIC PARTICLES
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THERMODYNAMIC PRESSURE AND ITS FLUCTUATIONS IN A CLASSICAL IDEAL GAS OF RELATIVISTIC PARTICLES

机译:相对论粒子经典理想气体中的热力学压力及其波动

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摘要

A full and consecutive analysis of the dynamic and thermodynamic properties of an ideal gas of relativistic particles with Lorentz-Einstein dispersion law and arbitrary number of translational degrees of freedom is carried out. Gibbs statistical mechanics is used along with Bogolyubov's concept of quasiaverages and the generalized version of the Bogolyubov-Zubarev theorem in the classical regime well beyond the temperature of the quantum degeneracy. General expressions for a pair of equations of state, namely thermic (for the pressure) and caloric (for the inner energy) are found; the fluctuations of these quantities are also found: the compressibility and heat capacity, respectively. All expressions are found in closed form and studied in low- and high-temperature limits.
机译:对具有劳伦兹-爱因斯坦弥散定律和任意数量的平移自由度的相对论粒子理想气体的动力学和热力学性质进行了全面连续的分析。 Gibbs统计力学与Bogolyubov的准均值概念以及Bogolyubov-Zubarev定理的广义版本一起使用,其经典机制远远超出了量子简并性的温度。找到了一对状态方程的通用表达式,即热(用于压力)和热(用于内部能量);还发现了这些量的波动:分别为可压缩性和热容量。所有表达式均以封闭形式找到,并在低温和高温范围内进行研究。

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  • 来源
    《Journal of Mathematical Sciences》 |2011年第6期|p.870-893|共24页
  • 作者单位

    People's Friendship University of Russia, Moscow, Russia;

    People's Friendship University of Russia, Moscow, Russia;

    Institute of Hydrodynamics of Czech Republic, Prague, Czech Republic;

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  • 正文语种 eng
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