Liouville equation in statistical mechanics is not applicable to gases composed of colliding molecules

IF 0.6 Q4 PHYSICS, MULTIDISCIPLINARY
Huai-Yu Wang
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引用次数: 1

Abstract

Liouville equation is a fundamental one in statistical mechanics. It is rooted in ensemble theory. By ensemble theory, the variation of the system’s microscopic state is indicated by the moving of the phase point, and the moving trajectory is believed continuous. Thus, the ensemble density is thought to be a smooth function, and it observes continuity equation. When the Hamiltonian canonical equations of the molecules are applied to the continuity equation, Liouville equation can be obtained. We carefully analyze a gas composed of a great number of molecules colliding with each other. The defects in deriving Liouville equation are found. Due to collision, molecules’ momenta changes discontinuously, so that the trajectories of the phase points are actually not continuous. In statistical mechanics, infinitesimals in physics and in mathematics should be distinguished. In continuity equation that the ensemble density satisfies, the derivatives with respect to space and time should be physical infinitesimals, while in Hamiltonian canonical equations that every molecule follows, the derivatives take infinitesimals in mathematics. In the course of deriving Liouville equation, the infinitesimals in physics are unknowingly replaced by those in mathematics. The conclusion is that Liouville equation is not applicable to gases.
统计力学中的刘维尔方程不适用于由碰撞分子组成的气体
刘维尔方程是统计力学中的一个基本方程。它植根于集合理论。根据系综理论,系统微观状态的变化可以通过相点的移动来表示,运动轨迹可以认为是连续的。因此,认为系综密度是一个光滑函数,它遵循连续性方程。将分子的哈密顿正则方程应用于连续性方程,得到Liouville方程。我们仔细地分析了一种由大量相互碰撞的分子组成的气体。发现了推导刘维尔方程的缺陷。由于碰撞,分子的动量变化不连续,因此相点的轨迹实际上是不连续的。在统计力学中,物理学中的无穷小和数学中的无穷小应该加以区分。在系综密度满足的连续性方程中,对空间和时间的导数应该是物理上的无穷小,而在每个分子都遵循的哈密顿正则方程中,导数在数学上取无穷小。在推导刘维尔方程的过程中,物理学中的无限小不知不觉地被数学中的无限小所取代。结论是,刘维尔方程不适用于气体。
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来源期刊
Physics Essays
Physics Essays PHYSICS, MULTIDISCIPLINARY-
自引率
83.30%
发文量
50
审稿时长
6-12 weeks
期刊介绍: Physics Essays has been established as an international journal dedicated to theoretical and experimental aspects of fundamental problems in Physics and, generally, to the advancement of basic knowledge of Physics. The Journal’s mandate is to publish rigorous and methodological examinations of past, current, and advanced concepts, methods and results in physics research. Physics Essays dedicates itself to the publication of stimulating exploratory, and original papers in a variety of physics disciplines, such as spectroscopy, quantum mechanics, particle physics, electromagnetic theory, astrophysics, space physics, mathematical methods in physics, plasma physics, philosophical aspects of physics, chemical physics, and relativity.
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