论文标题

玻色 - 哈伯德模型突然淬灭之后相关性的能量重新分布和时空演变

Energy redistribution and spatio-temporal evolution of correlations after a sudden quench of the Bose-Hubbard model

论文作者

Takasu, Yosuke, Yagami, Tomoya, Asaka, Hiroto, Fukushima, Yoshiaki, Nagao, Kazuma, Goto, Shimpei, Danshita, Ippei, Takahashi, Yoshiro

论文摘要

光晶格量子模拟器是研究量子多体系统的非平衡动力学的理想实验平台,通常很难使用经典计算机进行模拟。在这里,我们使用Bose-Hubbard模型的量子模拟器来研究量子淬火后远离平衡的动力学。我们成功地确认了一维系统和三维系统中的节能法,并提取单粒子相关性的传播速度在一维系统中。我们通过实验与一个维度的确切数值计算之间的定量比较来证实量子模拟器的有效性。在通过使用量子模拟结果作为参考的计算硬案例中,我们检查了数值方法的性能,即截断的Wigner近似,揭示其有用性和限制。这项工作构成了使用模拟量子模拟器的模范情况。

An optical-lattice quantum simulator is an ideal experimental platform to investigate non-equilibrium dynamics of a quantum many-body system, which is in general hard to simulate with classical computers. Here, we use our quantum simulator of the Bose-Hubbard model to study dynamics far from equilibrium after a quantum quench. We successfully confirm the energy conservation law in the one- and three-dimensional systems and extract the propagation velocity of the single-particle correlation in the one- and two-dimensional systems. We corroborate the validity of our quantum simulator through quantitative comparisons between the experiments and the exact numerical calculations in one dimension. In the computationally hard cases of two or three dimensions, by using the quantum-simulation results as references, we examine the performance of a numerical method, namely the truncated Wigner approximation, revealing its usefulness and limitation. This work constitutes an exemplary case for the usage of analog quantum simulators.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源