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Transport properties of quantum wires

机译:量子线的传输特性

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Electron transport in Luttinger liquids connected by tunnel barriers is reviewed. The non-analytic temperature behavior of the conductance of a single tunnel barrier is derived. An overview of charge and spin transport properties through a one-dimensional quantum dot formed by two impurities is given. The temperature and voltage dependences of conductance peaks reveal the non-Fermi liquid correlations. Several spin effects in the linear as well as non-linear transport are predicted. These include a parity effect in linear transport which is due to the Pauli exclusion principle, and negative differential conductances in non-linear transport. The latter are due to charge and spin selection rules and non-Fermi liquid correlations which lead to correlation-induced trapping of higher-spin states. The possibility for experimental verification of this novel effect is discussed. (C) 2004 Published by Elsevier Ltd.
机译:审查了通过隧道势垒连接的卢廷格液体中的电子传输。推导了单个隧道势垒的电导率的非解析温度行为。给出了通过由两种杂质形成的一维量子点的电荷和自旋输运性质的概述。电导峰的温度和电压依赖性揭示了非费米液体的相关性。预测了线性和非线性传输中的几种自旋效应。其中包括线性传输中的奇偶效应(由于保利排除原理)和非线性传输中的负差分电导。后者是由于电荷和自旋选择规则以及非费米液体相关性导致的,这些非费米液体相关性导致相关性诱使较高自旋态的捕获。讨论了对该新颖效果进行实验验证的可能性。 (C)2004由Elsevier Ltd.出版

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