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Projection operator approach to transport in complex single-particle quantum systems

机译:投影算子在复杂单粒子量子系统中的输运方法

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摘要

We discuss the time-convolutionless (TCL) projection operator approach to transport in closed quantum systems. The projection onto local densities of quantities such as energy, magnetization, particle number, etc. yields the reduced dynamics of the respective quantities in terms of a systematic perturbation expansion. In particular, the lowest order contribution of this expansion is used as a strategy for the analysis of transport in _°modular_± quantum systems corresponding to quasi one-dimensional structures which consist of identical or similar many-level subunits. Such modular quantum systems are demonstrated to represent many physical situations and several examples of complex single-particle models are analyzed in detail. For these quantum systems lowest order TCL is shown to represent an efficient tool which also allows to investigate the dependence of transport on the considered length scale. To estimate the range of validity of the obtained equations of motion we extend the standard projection to include additional degrees of freedom which model non-Markovian effects of higher orders.
机译:我们讨论了在封闭量子系统中传输的无时间卷积(TCL)投影算子方法。投影到诸如能量,磁化强度,粒子数量等的局部密度上,就系统的扰动扩展而言,将减小各个量的动力学。特别地,该扩展的最低阶贡献被用作用于分析与由相同或相似的多级亚单元组成的准一维结构相对应的_±模量子系统中的传输的策略。演示了这种模块化量子系统,可以代表许多物理情况,并详细分析了复杂单粒子模型的几个示例。对于这些量子系统,最低阶的TCL被表示为一种有效的工具,该工具还允许研究传输对所考虑的长度尺度的依赖性。为了估计所获得的运动方程的有效性范围,我们扩展了标准投影以包括附加的自由度,该自由度对较高阶的非马尔可夫效应进行建模。

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