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首页> 外文期刊>Progress of Theoretical Physics. Supplement >Nonequilibrium Distribution of the Microscopic Thermal Current in Steady Thermal Transport Systems
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Nonequilibrium Distribution of the Microscopic Thermal Current in Steady Thermal Transport Systems

机译:稳态热传输系统中微观热电流的非平衡分布

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Nonequilibrium distribution of the microscopic thermal current is investigated by direct molecular dynamics simulations. The microscopic thermal current in this study is defined by a flow of kinetic energy carried by a single particle. Asymptotic parallel and antiparallel tails of the nonequilibrium distribution to an average thermal current are identical to ones of equilibrium distribution with different temperatures. These temperatures characterizing the tails are dependent on a characteristic length in which a memory of dynamics is completely erased by several particle collisions. This property of the tails of nonequilibrium distribution is confirmed in other thermal transport systems. In addition, statistical properties of a particle trapped by a harmonic potential in a steady thermal conducting state are also studied.This particle feels a finite force parallel to the average thermal current as a consequence of the skewness of the distribution of the current. This force is interpreted as the microscopic origin of thermophoresis.
机译:通过直接分子动力学模拟研究了微观热电流的非平衡分布。这项研究中的微观热流是由单个粒子携带的动能流来定义的。非平衡分布到平均热电流的渐近平行和反平行尾部与不同温度下的平衡分布相同。表征尾部的这些温度取决于特征长度,在该特征长度中,通过几次粒子碰撞完全消除了动力学记忆。非平衡分布的尾部的这种特性在其他热传输系统中得到了证实。此外,还研究了在稳态导热状态下​​被谐波电势俘获的粒子的统计特性,由于电流分布的偏斜,该粒子感觉到与平均热电流平行的有限力。该力被解释为热泳的微观起源。

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