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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Exact steady-state solution of the Boltzmann equation: A driven one-dimensional inelastic Maxwell gas - art. no. 011305
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Exact steady-state solution of the Boltzmann equation: A driven one-dimensional inelastic Maxwell gas - art. no. 011305

机译:玻尔兹曼方程的精确稳态解:驱动的一维非弹性麦克斯韦气体-art。没有。 011305

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摘要

The exact nonequilibrium steady-state solution of the nonlinear Boltzmann equation for a driven inelastic Maxwell model was obtained by Ben-Naim and Krapivsky [Phys. Rev. E 61, R5 (2000)] in the form of an infinite product for the Fourier transform of distribution function f(c). In this paper we have inverted the Fourier transform to express f(c) in the form of an infinite series of exponentially decaying terms. The dominant high-energy tail is exponential, f(c)similar or equal toA(0) exp(-ac), where a=2/root1-alpha(2) and amplitude A(0) is given in terms of a converging sum. This is explicitly shown in the totally inelastic limit (alpha-->0) and in the quasielastic limit (alpha-->1). In the latter case, the distribution is dominated by a Maxwellian for a very wide range of velocities, but a crossover from a Maxwellian to an exponential high-energy tail exists for velocities c-c(0)similar to1/rootq around a crossover velocity c(0)similar or equal toln q(-1)/rootq, where qequivalent to(1-alpha)/21. In this crossover region the distribution function is extremely small, ln f(c(0))similar or equal toq(-1) ln q. [References: 41]
机译:由Ben-Naim和Krapivsky [Phys。修订版E 61,R5(2000)]以分布函数f(c)的傅立叶变换的无穷乘积的形式出现。在本文中,我们已经将傅立叶变换反向,以无穷级数的指数衰减项的形式表示f(c)。占优势的高能尾巴是指数的,f(c)近似或等于A(0)exp(-a c ),其中a = 2 / root1-alpha(2)且振幅A(0)表示为收敛的总和。这在完全非弹性极限(alpha-> ​​0)和拟弹性极限(alpha-> ​​1)中明确显示。在后一种情况下,速度的很大范围内都由麦克斯韦分布控制,但是对于速度 cc(0)类似于1 / rootq的跨越速度,存在麦克斯韦分布到指数高能尾的交叉c(0)等于或等于ln q(-1)/ rootq,其中q等于(1-alpha)/ 2 1。在这个交叉区域中,分布函数非常小,ln f(c(0))近似等于q(-1)ln q。 [参考:41]

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