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Dissipative Diamagnetism—A Case Study for Equilibrium and Nonequilibrium Statistical Mechanics

机译:耗散磁性—以平衡与非平衡统计力学为例

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Using the path integral approach to equilibrium statistical physics the effect of dissipation on Landau diamagnetism is calculated. The calculation clarifies the essential role of the boundary of the container in which the electrons move. Further, the derived result for diamagnetization also matches with the expression obtained from a time-dependent quantum Langevin equation in the asymptotic limit, provided a certain order is maintained in taking limits. This identification then unifies equilibrium and nonequilibrium statistical physics for a phenomenon like diamagnetism, which is inherently quantum and strongly dependent on boundary effects. In addition we have shown that our results are directly connected with fluctuation induced diamagnetic susceptibility of superconducting grains.
机译:使用路径积分方法进行平衡统计物理学,计算了耗散对Landau抗磁性的影响。该计算阐明了电子在其中移动的容器边界的基本作用。此外,如果在取极限中保持一定的顺序,则用于反磁化的推导结果也与在渐近极限中从随时间变化的量子兰格文方程获得的表达式相匹配。然后,这种识别统一了像反磁性这样的现象的平衡和非平衡统计物理学,该现象本质上是量子的,并且强烈依赖于边界效应。此外,我们已经表明,我们的结果与超导晶粒的波动诱导的抗磁化率直接相关。

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