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Mesoscopic One-Way Channels for Quantum State Transfer via the Quantum Hall Effect

机译:通过量子霍尔效应进行量子态转移的介观单向通道

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摘要

We show that the one-way channel formalism of quantum optics has a physical realization in electronic systems. In particular, we show that magnetic edge states form unidirectional quantum channels capable of coherently transporting electronic quantum information. Using the equivalence between one-way photonic channels and magnetic edge states, we adapt a proposal for quantum state transfer to mesoscopic systems using edge states as a quantum channel, and show that it is feasible with reasonable experimental parameters. We discuss how this protocol may be used to transfer information encoded in number, charge, or spin states of quantum dots, so it may prove useful for transferring quantum information between parts of a solid-state quantum computer.
机译:我们证明了量子光学的单向通道形式主义在电子系统中具有物理实现。特别地,我们显示出磁边缘状态形成了能够相干地传输电子量子信息的单向量子通道。利用单向光子通道与磁性边缘态之间的等价关系,我们将量子态转移的建议改编为以边缘态作为量子通道的介观系统,并证明在合理的实验参数下是可行的。我们讨论了如何使用此协议传输以量子点的数量,电荷或自旋状态编码的信息,因此对于在固态量子计算机的各个部分之间传输量子信息可能很有用。

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