Zhu Qingling, Sun Zheng-Hang, Gong Ming, Chen Fusheng, Zhang Yu-Ran, Wu Yulin, Ye Yangsen, Zha Chen, Li Shaowei, Guo Shaojun, Qian Haoran, Huang He-Liang, Yu Jiale, Deng Hui, Rong Hao, Lin Jin, Xu Yu, Sun Lihua, Guo Cheng, Li Na, Liang Futian, Peng Cheng-Zhi, Fan Heng, Zhu Xiaobo, Pan Jian-Wei
Hefei National Research Center for Physical Sciences at the Microscale and Department of Modern Physics, University of Science and Technology of China, Hefei, Anhui 230026, China.
Shanghai Branch, CAS Center for Excellence and Synergetic Innovation Center in Quantum Information and Quantum Physics, University of Science and Technology of China, Shanghai 201315, China.
Phys Rev Lett. 2022 Apr 22;128(16):160502. doi: 10.1103/PhysRevLett.128.160502.
Understanding various phenomena in nonequilibrium dynamics of closed quantum many-body systems, such as quantum thermalization, information scrambling, and nonergodic dynamics, is crucial for modern physics. Using a ladder-type superconducting quantum processor, we perform analog quantum simulations of both the XX-ladder model and the one-dimensional XX model. By measuring the dynamics of local observables, entanglement entropy, and tripartite mutual information, we signal quantum thermalization and information scrambling in the XX ladder. In contrast, we show that the XX chain, as free fermions on a one-dimensional lattice, fails to thermalize to the Gibbs ensemble, and local information does not scramble in the integrable channel. Our experiments reveal ergodicity and scrambling in the controllable qubit ladder, and open the door to further investigations on the thermodynamics and chaos in quantum many-body systems.
理解封闭量子多体系统非平衡动力学中的各种现象,如量子热化、信息搅乱和非遍历动力学,对现代物理学至关重要。我们使用梯型超导量子处理器对XX梯模型和一维XX模型进行了模拟量子仿真。通过测量局部可观测量、纠缠熵和三方互信息的动力学,我们验证了XX梯中的量子热化和信息搅乱。相比之下,我们表明,作为一维晶格上的自由费米子的XX链无法热化到吉布斯系综,并且在可积通道中局部信息不会搅乱。我们的实验揭示了可控量子比特梯中的遍历性和搅乱现象,并为进一步研究量子多体系统中的热力学和混沌现象打开了大门。