物理
量子
哈密顿量(控制论)
普遍性(动力系统)
量子力学
量子系统
量子态
对称性破坏
开放量子系统
量子动力学
量子相
量子过程
自发对称破缺
量子不和谐
厄米矩阵
理论物理学
量子操作
量子耗散
T对称
量子技术
量子模拟器
量子网络
作者
Yang Wu,Wenquan Liu,Jianpei Geng,Xingrui Song,Xiangyu Ye,Chang-Kui Duan,Xing Rong,Jiangfeng Du
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2019-05-30
卷期号:364 (6443): 878-880
被引量:409
标识
DOI:10.1126/science.aaw8205
摘要
Steering the evolution of single spin systems is crucial for quantum computing and quantum sensing. The dynamics of quantum systems has been theoretically investigated with parity-time-symmetric Hamiltonians exhibiting exotic properties. Although parity-time symmetry has been explored in classical systems, its observation in a single quantum system remains elusive. We developed a method to dilate a general parity-time-symmetric Hamiltonian into a Hermitian one. The quantum state evolutions ranging from regions of unbroken to broken [Formula: see text] symmetry have been observed with a single nitrogen-vacancy center in diamond. Owing to the universality of the dilation method, our result provides a route for further exploiting and understanding the exotic properties of parity-time symmetric Hamiltonian in quantum systems.
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