论文标题
通过量子非解析联轴器与原子时钟旋风监测量子模拟器
Monitoring Quantum Simulators via Quantum Non-Demolition Couplings to Atomic Clock Qubits
论文作者
论文摘要
我们讨论通过量子非解析(QND)耦合到辅助“时钟” Qubit,监视模拟量子模拟器的时间演变。感兴趣的QND变量是量子多体系统的“能量”,该系统由量子模拟器的哈密顿量代表。我们描述了使用激光敷料方案捕获在镊子阵列中的Rydberg原子的基础QND Hamiltonian的物理实现,用于广泛的自旋模型。作为应用程序,我们讨论了一种用于测量量子多体系统光谱形式的量子协议,其目的是识别ergodic vs.非凝聚力动力学的特征,我们为Rydberg平台上的无序1D海森伯格和Floquet Spin说明了这一点。我们的结果还为运行量子相估计方案提供了物理成分,以测量能量的测量,并为模拟量子模拟器上指定的光谱分辨率制备能量本质状态。
We discuss monitoring the time evolution of an analog quantum simulator via a quantum non-demolition (QND) coupling to an auxiliary `clock' qubit. The QND variable of interest is the `energy' of the quantum many-body system, represented by the Hamiltonian of the quantum simulator. We describe a physical implementation of the underlying QND Hamiltonian for Rydberg atoms trapped in tweezer arrays using laser dressing schemes for a broad class of spin models. As an application, we discuss a quantum protocol for measuring the spectral form factor of quantum many-body systems, where the aim is to identify signatures of ergodic vs. non-ergodic dynamics, which we illustrate for disordered 1D Heisenberg and Floquet spin models on Rydberg platforms. Our results also provide the physical ingredients for running quantum phase estimation protocols for measurement of energies, and preparation of energy eigenstates for a specified spectral resolution on an analog quantum simulator.