论文标题
带有固态量子模拟器的浮光拓扑阶段的数字量子模拟
Digital Quantum Simulation of Floquet Topological Phases with a Solid-State Quantum Simulator
论文作者
论文摘要
具有利用复杂量子系统动力学的能力的量子模拟器已成为探测外来拓扑阶段的有前途的平台。由于各种可控量子系统提供的灵活性使得能够深入了解此类复杂问题的量子模拟,因此模拟量子模拟器最近显示了其可行性,可以解决探索拓扑阶段的问题。但是,数字量子模拟和拓扑阶段的检测仍然难以捉摸。在这里,我们在室温下使用固态量子模拟器对拓扑阶段进行了数字量子模拟。与以前有关静态拓扑阶段的著作不同,此处模拟的拓扑阶段是Floquet拓扑阶段。此外,我们还说明了数字模拟量子淬灭并观察浮雕拓扑阶段的非平衡动力学的过程。通过量子淬灭,通过测量时间平均的自旋极化来明确检测0-和π-能源拓扑不变性。我们的实验开辟了一条新的途径,以数字化模拟和检测使用快速开发的可编程量子模拟器的Floquet拓扑阶段。
Quantum simulator with the ability to harness the dynamics of complex quantum systems has emerged as a promising platform for probing exotic topological phases. Since the flexibility offered by various controllable quantum systems has enabled to gain insight into quantum simulation of such complicated problems, analog quantum simulator has recently shown its feasibility to tackle problems of exploring topological phases. However, digital quantum simulation and detection of topological phases still remain elusive. Here, we develop and experimentally realize the digital quantum simulation of topological phase with a solid-state quantum simulator at room temperature. Distinct from previous works dealing with static topological phases, the topological phases emulated here are Floquet topological phases. Furthermore, we also illustrate the procedure of digitally simulating a quantum quench and observing the nonequilibrium dynamics of Floquet topological phases. By means of quantum quench, the 0- and π-energy topological invariants are unambiguously detected through measuring time-averaged spin polarizations. Our experiment opens up a new avenue to digitally simulate and detect Floquet topological phases with fast-developed programmable quantum simulators.