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首页> 外文期刊>Annals of Physics >Influence of PT-symmetric complex potentials on the decoupling mechanism in quantum transport processes
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Influence of PT-symmetric complex potentials on the decoupling mechanism in quantum transport processes

机译:PT对称复杂电位对量子传输过程解耦机制的影响

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摘要

We consider one system in which the terminal dots of a one-dimensional quantum-dot chain couple equally to the left and right leads and study the influence of PT-symmetric complex potentials on the quantum transport process. It is found that in the absence of the complex potentials, remarkable decoupling and antiresonance phenomena are able to co-occur in the transport process. For the chains with odd(even) dots, their even(odd)-numbered molecular states decouple from the leads. Meanwhile, antiresonance occurs at the positions of the even(odd)-numbered eigenenergies of the sub-chains without terminal dots. When the PT-symmetric complex potentials are applied on the terminal dots, the decoupling phenomenon is found to transform into the Fano antiresonance. These results can helpful in understanding the quantum transport modified by the PT symmetry in non-Hermitian discrete systems. (C) 2020 Elsevier Inc. All rights reserved.
机译:我们考虑一个系统,其中一维量子点链的终端点同样地向左右引线和右引线进行,并研究Pt对称复合电位对量子传输过程的影响。 发现在没有复杂的电位的情况下,可以在运输过程中具有显着的去耦和反谐衡现象。 对于具有奇数(偶数)点的链,它们的偶数(奇数) - 数量的分子状态与引线脱离。 同时,在偶数(奇数)的位置的位置发生反射,没有终端点的亚链的数量的亚链的。 当PT对称复合电位施加在终端点上时,发现解耦现象转换为FANO反谐振。 这些结果可以有助于理解非封闭师分立系统中PT对称性修饰的量子传输。 (c)2020 Elsevier Inc.保留所有权利。

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