Effects of Disorder on Non-unitary PT Symmetric Quantum Walks

Ken Mochizuki, H. Obuse
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引用次数: 7

Abstract

$\mathcal{PT}$ symmetry, namely, a combined parity and time-reversal symmetry can make non-unitary quantum walks exhibit entirely real eigenenergy. However, it is known that the concept of $\mathcal{PT}$ symmetry can be generalized and an arbitrary anti-unitary symmetry has a possibility to substitute $\mathcal{PT}$ symmetry. The aim of the present work is to seek such non-unitary quantum walks with generalized $\mathcal{PT}$ symmetry by focusing on effects of spatially random disorder which breaks $\mathcal{PT}$ symmetry. We numerically find non-unitary quantum walks whose quasi-energy is entirely real despite $\mathcal{PT}$ symmetry is broken.
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无序对非酉PT对称量子行走的影响
$\mathcal{PT}$对称性,即奇偶性和时间反转对称性的结合,可以使非幺正量子行走表现出完全实数的本征能量。然而,我们知道$\mathcal{PT}$对称的概念是可以推广的,任意的反酉对称有可能代替$\mathcal{PT}$对称。本文的目的是通过关注破坏$\mathcal{PT}$对称性的空间随机无序的影响,寻求具有广义$\mathcal{PT}$对称性的非酉量子行走。我们在数值上发现了非酉量子漫步,其准能量是完全实数的,尽管$\数学{PT}$对称性被打破。
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