Giudici Giuliano, Lukin Mikhail D, Pichler Hannes
Institute for Theoretical Physics, University of Innsbruck, Innsbruck A-6020, Austria.
Institute for Quantum Optics and Quantum Information, Austrian Academy of Sciences, Innsbruck A-6020, Austria.
Phys Rev Lett. 2022 Aug 26;129(9):090401. doi: 10.1103/PhysRevLett.129.090401.
We theoretically analyze recent experiments [Semeghini et al., Science 374, 1242 (2021)SCIEAS0036-807510.1126/science.abi8794] demonstrating the onset of a topological spin liquid using a programmable quantum simulator based on Rydberg atom arrays. In the experiment, robust signatures of topological order emerge in out-of-equilibrium states that are prepared using a quasiadiabatic state preparation protocol. We show theoretically that the state preparation protocol can be optimized to target the fixed point of the topological phase-the resonating valence bond state of hard dimers-in a time that scales linearly with the number of atoms. Moreover, we provide a two-parameter variational manifold of tensor network states that accurately describe the many-body dynamics of the preparation process. Using this approach we analyze the nature of the nonequilibrium state, establishing the emergence of topological order.
我们从理论上分析了最近的实验 [Semeghini等人,《科学》374, 1242 (2021)SCIEAS0036 - 807510.1126 / science.abi8794],该实验利用基于里德堡原子阵列的可编程量子模拟器证明了拓扑自旋液体的出现。在实验中,拓扑序的稳健特征出现在使用准绝热态制备协议制备的非平衡态中。我们从理论上表明,态制备协议可以被优化,以便在与原子数成线性比例的时间内靶向拓扑相的定点——硬二聚体的共振价键态。此外,我们提供了一个张量网络态的双参数变分流形,它准确地描述了制备过程的多体动力学。使用这种方法,我们分析了非平衡态的性质,确定了拓扑序的出现。