物理
量子
奇偶性(物理)
国家(计算机科学)
厄米矩阵
量子动力学
量子态
量子力学
量子算法
振荡(细胞信号)
数学
算法
生物
遗传学
作者
Yi-Tao Wang,Zhi-Peng Li,Shang Yu,Zhi‐Jin Ke,Wei Liu,Yu Meng,Yuan Ze Yang,Jian-Shun Tang,Chuan-Feng Li,Guang-Can Guo,Yi-Tao Wang,Zhi-Peng Li,Shang Yu,Zhi‐Jin Ke,Wei Liu,Yu Meng,Yuan Ze Yang,Jian-Shun Tang,Chuan-Feng Li,Guang-Can Guo
标识
DOI:10.1103/physrevlett.124.230402
摘要
Comprehensive study on parity-time (PT) symmetric systems demonstrates the novel properties and innovative application of non-Hermitian physics in recent years. In the quantum regime, PT symmetric physics exhibits unique quantum dynamical behaviors such as spontaneous state-distinguishability oscillation. However, the construction and control of a PT symmetric quantum system are still challenging, that and restrict the experimental investigation of PT symmetric quantum nature and application. In this Letter, we propose and construct a recycling-structure PT symmetric quantum simulator for the first time, which can effectively simulate the discrete-time dynamical process of a PT symmetric quantum system in both unbroken and broken phases, to be different from our previous work [J.-S. Tang, et al., Nat. Photonics 10, 642 (2016)]. We investigate the dynamical features of quantum state distinguishability based on the PT symmetric simulator. Our results demonstrate the novel PT symmetric quantum dynamics characterized by the periodical oscillation of state distinguishability in the unbroken phase, and the monotonic decay of that in the broken phase. This work also provides a practical experimental platform for the future intensive study of PT symmetric quantum dynamics.
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