Quantum Measurement and Stochastic Processes in Mesoscopic Conductors

G. Milburn
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引用次数: 8

Abstract

In quantum measurement theory it is necessary to show how a, quantum source conditions a classical stochastic record of measured results. We discuss mesoscopic conductance using quantum stochastic calculus to elucidate the quantum nature of the measurement taking place in these systems. To illustrate the method we derive the current fluctuations in a two terminal mesoscopic circuit with two tunnel barriers containing a single quasi bound state on the well. The method enables us to focus on either the incoming/ outgoing Fermi fields in the leads, or on the irreversible dynamics of the well state itself. We show an equivalence between the approach of Buttiker and the Fermi quantum stochastic calculus for mesoscopic systems.
介观导体中的量子测量和随机过程
在量子测量理论中,有必要说明量子源如何形成测量结果的经典随机记录。我们使用量子随机演算来讨论介观电导,以阐明在这些系统中发生的测量的量子性质。为了说明该方法,我们推导了具有两个隧道势垒的双端介观电路的电流波动,其中阱上有一个单一的准束缚态。该方法使我们既可以关注引线中传入/传出的费米场,也可以关注阱态本身的不可逆动力学。我们证明了介观系统的Buttiker方法和费米量子随机演算之间的等价性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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