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Rashba spin-splitting of single electrons and Cooper pairs

机译:Rashba spin-splitting单电子和库伯对

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摘要

Electric weak links, the term used for those parts of an electrical circuit that provide most of the resistance against the flow of an electrical current, are important elements of many nanodevices. Quantum dots, nanowires and nano-constrictions that bridge two bulk conductors (or superconductors) are examples of such weak links. Here we consider nanostructures where the electronic spin-orbit interaction is strong in the weak link but is un-important in the bulk conductors, and explore theoretically the role of the spin-orbit active weak link (which we call a "Rashba spin splitter") as a source of new spin-based functionality in both normal and superconducting devices. Some recently predicted phenomena, including mechanically-controlled spin-and charge currents as well as the effect of spin polarization of superconducting Cooper pairs, are reviewed. Published by AIP Publishing.
机译:电动薄弱环节,这个词用于这些部分的电路提供的大部分抵抗电子的流动当前,许多的重要元素nanodevices。nano-constrictions桥两大部分导体(或超导体)的例子这样的薄弱环节。电子旋轨道相互作用在哪里吗强大的薄弱环节,但重要的大部分导体,在理论上探索自旋轨道的作用活跃的薄弱环节(我们称之为“Rashba旋转分配器”)作为一个新的spin-based功能的来源正常和超导设备。预测现象,包括机械控制旋转和充电电流以及自旋极化的影响超导库珀对,进行了综述。每年出版的出版。

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