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Quantum pumping and dissipation in closed systems

机译:封闭系统中的量子泵浦和耗散

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Current can be pumped through a closed system by changing parameters (or fields) in time. Linear response theory (the Kubo formula) allows one to analyze both the charge transport and the associated dissipation effect. We make a distinction between adiabatic and non-adiabatic regimes, and explain the Subtle limit of an infinite system. As an example we discuss the following question: What is the amount of charge which is pushed by a moving scatterer? In the low-frequency (DC) limit we can write dQ = -GdX, where dX is the displacement of the scatterer. Thus the issue is to calculate the generalized conductance G. (c) 2005 Elsevier B.V. All rights reserved.
机译:可以通过及时更改参数(或场)将电流泵送通过封闭系统。线性响应理论(久保公式)允许人们分析电荷传输和相关的耗散效应。我们区分绝热和非绝热的制度,并解释了无限系统的微妙极限。作为示例,我们讨论以下问题:移动的散射体推动的电荷量是多少?在低频(DC)极限下,我们可以写成dQ = -GdX,其中dX是散射体的位移。因此,问题是要计算广义电导G。(c)2005 Elsevier B.V.保留所有权利。

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