论文标题

使用随机Schrödinger方程对非铁质动力拓扑状态进行实验量子模拟

Experimental quantum simulation of non-Hermitian dynamical topological states using stochastic Schrödinger equation

论文作者

Lin, Zidong, Zhang, Lin, Long, Xinyue, Fan, Yu-ang, Li, Yishan, Tang, Kai, Li, Jun, Nie, XinFang, Xin, Tao, Liu, Xiong-Jun, Lu, Dawei

论文摘要

噪声在实际量子系统中无处不在,导致非铁量量子动力学,并可能影响物质的基本状态。在这里,我们在实验中报告了使用核磁共振处理器的二维非量子量子异常大厅(QAH)模型的量子模拟。与使用辅助码头的常规实验不同,我们基于随机的schrödinger方程开发了随机平均方法,以实现非省耗散量子动力学,该动力学在节省量子模拟源并简化量子门的实现方面具有优势。我们证明了动力拓扑对弱噪声的稳定性,并观察到由强噪声驱动的两种类型的动态拓扑转换。此外,无论观察到噪声强度如何,新兴拓扑始终是强大的。我们的工作显示了使用随机Schrödinger方程的耗散量子动力学的可行量子仿真方法,并打开了研究非热动力学拓扑物理学的途径。

Noise is ubiquitous in real quantum systems, leading to non-Hermitian quantum dynamics, and may affect the fundamental states of matter. Here we report in experiment a quantum simulation of the two-dimensional non-Hermitian quantum anomalous Hall (QAH) model using the nuclear magnetic resonance processor. Unlike the usual experiments using auxiliary qubits, we develop a stochastic average approach based on the stochastic Schrödinger equation to realize the non-Hermitian dissipative quantum dynamics, which has advantages in saving the quantum simulation sources and simplifies implementation of quantum gates. We demonstrate the stability of dynamical topology against weak noise, and observe two types of dynamical topological transitions driven by strong noise. Moreover, a region that the emergent topology is always robust regardless of the noise strength is observed. Our work shows a feasible quantum simulation approach for dissipative quantum dynamics with stochastic Schrödinger equation and opens a route to investigate non-Hermitian dynamical topological physics.

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