论文标题
使用可调耦合器的超导量子处理器上的广义Aubry-André-Harper模型观察临界相变的观察
Observation of critical phase transition in a generalized Aubry-André-Harper model on a superconducting quantum processor with tunable couplers
论文作者
论文摘要
量子模拟通过映射到可控的量子系统,从而可以研究非平衡系统中的多体系统,从而为计算棘手的问题提供了一种新工具。在这里,使用可编程的量子处理器,该处理器通过可调耦合器进行相互作用的10个超导码位的链条,我们为三个不同阶段(即扩展,局部化和关键阶段)模拟了一维广义的Aubry-André-Harper模型。在存在准周期调制的情况下,研究了相变和多体动力学的性能,分别通过调节耦合和Qubit频率的强度来分别调整控制模型的偏高跳跃系数和现场电位。我们在不同阶段观察到初始单兴和多启示状态的自旋传输,并通过实验测量参与熵的动力学来表征相变。我们的实验结果表明,超导处理器的新开发的可调耦合结构极大地扩展了各种汉密尔顿人的模拟领域,并可能触发对各种量子和拓扑现象的进一步研究。
Quantum simulation enables study of many-body systems in non-equilibrium by mapping to a controllable quantum system, providing a new tool for computational intractable problems. Here, using a programmable quantum processor with a chain of 10 superconducting qubits interacted through tunable couplers, we simulate the one-dimensional generalized Aubry-André-Harper model for three different phases, i.e., extended, localized and critical phases. The properties of phase transitions and many-body dynamics are studied in the presence of quasi-periodic modulations for both off-diagonal hopping coefficients and on-site potentials of the model controlled respectively by adjusting strength of couplings and qubit frequencies. We observe the spin transport for initial single- and multi-excitation states in different phases, and characterize phase transitions by experimentally measuring dynamics of participation entropies. Our experimental results demonstrate that the newly developed tunable coupling architecture of superconducting processor extends greatly the simulation realms for a wide variety of Hamiltonians, and may trigger further investigations on various quantum and topological phenomena.