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Influence of mathcal{PT}-symmetric complex potentials on the decoupling mechanism in quantum transport process
arXiv
Authors: Lian-Lian Zhang, Wei-Jiang Gong, Guang-Yu Yi, An Du
Year
2016
Paper ID
42424
Status
Preprint
Abstract Read
~2 min
Abstract Words
160
Citations
N/A
Abstract
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 mathcal{PT}-symmetric complex potentials on the quantum transport process. It is found that in the case of the Hermitian Hamiltonian, remarkable decoupling and antiresonance phenomena have an opportunity to co-occur in the transport process. For the chains with odd(even) dots, all 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 mathcal{PT}-symmetric complex potentials are introduced to the terminal dots, the decoupling phenomenon is found to transform into the Fano antiresonance. In addition, it shows that appropriate magnetic flux can interchange the roles of the odd and even molecular states. These results can assist to understand the quantum transport modified by the mathcal{PT} symmetry in non-Hermitian discrete systems.
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- 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...
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