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Experimental Trapped-ion Quantum Simulation of the Kibble-Zurek dynamics in momentum space

机译:动量空间中Kibble-Zurek动力学的实验捕获离子量子模拟

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The Kibble-Zurek mechanism is the paradigm to account for the nonadiabatic dynamics of a system across a continuous phase transition. Its study in the quantum regime is hindered by the requisite of ground state cooling. We report the experimental quantum simulation of critical dynamics in the transverse-field Ising model by a set of Landau-Zener crossings in pseudo-momentum space, that can be probed with high accuracy using a single trapped ion. We test the Kibble-Zurek mechanism in the quantum regime in the momentum space and find the measured scaling of excitations is in accordance with the theoretical prediction.
机译:Kibble-zurek机制是解释在连续相位过渡跨越系统的非等压动态的范例。它在量子制度中的研究受到基站冷却所需的阻碍。我们通过伪动量空间中的一组Landau-Zener交叉报告横向场层模型中的临界动力学的实验量子模拟,可以使用单捕离子以高精度探测。我们在势头空间中测试量子制度中的kibble-zurek机制,发现刺激的测量缩放符合理论预测。

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