论文标题

在捕获的离子量子模拟器中多体脱落

Many-Body Dephasing in a Trapped-Ion Quantum Simulator

论文作者

Kaplan, Harvey B., Guo, Lingzhen, Tan, Wen Lin, De, Arinjoy, Marquardt, Florian, Pagano, Guido, Monroe, Christopher

论文摘要

封闭的相互作用量子多体系统如何放松和去度随时间的函数是热力学和统计物理学中的一个基本问题。在这项工作中,我们分析并观察了可调远程相互作用的横向横向场伊斯丁·哈密顿(Hamiltonian Hamiltonian Hamiltonian)在用被困的离子量子模拟器实现的量子淬灭之后的持续时间波动。我们测量有限尺寸系统的平均磁化剂量的时间波动为$ 1/2 $颗粒。我们在系统的特性与具有全局自旋旋转耦合的可集成的哈密顿量密切相关的制度中进行实验,该旋转旋转耦合即使对于长期不可融合的动力学也可以进行分析预测。时间波动的分析表达可预测随着系统大小增加的时间波动的指数抑制。我们的测量数据与我们的理论一致,从而预测了多体性驱动的状态。

How a closed interacting quantum many-body system relaxes and dephases as a function of time is a fundamental question in thermodynamic and statistical physics. In this work, we analyse and observe the persistent temporal fluctuations after a quantum quench of a tunable long-range interacting transverse-field Ising Hamiltonian realized with a trapped-ion quantum simulator. We measure the temporal fluctuations in the average magnetization of a finite-size system of spin-$1/2$ particles. We experiment in a regime where the properties of the system are closely related to the integrable Hamiltonian with global spin-spin coupling, which enables analytical predictions even for the long-time non-integrable dynamics. The analytical expression for the temporal fluctuations predicts the exponential suppression of temporal fluctuations with increasing system size. Our measurement data is consistent with our theory predicting the regime of many-body dephasing.

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