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Computing with spins: from classical to quantum computing

机译:自旋计算:从经典计算到量子计算

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This article reviews the use of single electron spins to compute. In classical computing schemes, a binary bit is represented by the bistable spin polarization of a single electron confined in a quantum dot and subjected to a weak magnetic field. The spin orientation can be either parallel or antiparallel to the field, so that it becomes a binary variable which can encode logic 0 and logic 1. Coherent superposition of these two polarizations can represent a qubit for quantum computing. By engineering the exchange interaction between closely spaced spins in neighboring quantum dots, it is possible to implement either classical or quantum logic gates. (C) 2004 Elsevier Ltd. All rights reserved.
机译:本文回顾了单电子自旋的计算方法。在经典的计算方案中,二进制位由限制在量子点中并经受弱磁场的单个电子的双稳态自旋极化表示。自旋方向可以与场平行或反平行,因此它成为可以对逻辑0和逻辑1进行编码的二进制变量。这两个极化的相干叠加可以表示量子计算的量子位。通过设计相邻量子点中紧密间隔的自旋之间的交换相互作用,可以实现经典或量子逻辑门。 (C)2004 Elsevier Ltd.保留所有权利。

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