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具有可编程自旋量子模拟器的多体局域离散时间晶体。

Many-body-localized discrete time crystal with a programmable spin-based quantum simulator.

机构信息

QuTech, Delft University of Technology, PO Box 5046, 2600 GA Delft, Netherlands.

Kavli Institute of Nanoscience Delft, Delft University of Technology, P.O. Box 5046, 2600 GA Delft, Netherlands.

出版信息

Science. 2021 Dec 17;374(6574):1474-1478. doi: 10.1126/science.abk0603. Epub 2021 Nov 4.

Abstract

The discrete time crystal (DTC) is a nonequilibrium phase of matter that spontaneously breaks time-translation symmetry. Disorder-induced many-body localization can stabilize the DTC phase by breaking ergodicity and preventing thermalization. Here, we observe the hallmark signatures of the many-body–localized DTC using a quantum simulation platform based on individually controllable carbon-13 nuclear spins in diamond. We demonstrate long-lived period-doubled oscillations and confirm that they are robust for generic initial states, thus showing the characteristic time-crystalline order across the many-body spectrum. Our results are consistent with the realization of an out-of-equilibrium Floquet phase of matter and introduce a programmable quantum simulator based on solid-state spins for exploring many-body physics.

摘要

离散时间晶体(DTC)是一种物质的非平衡相,它自发地打破时间平移对称性。无序诱导的多体局域化可以通过打破遍历性和阻止热化来稳定 DTC 相。在这里,我们使用基于金刚石中可单独控制的碳-13 核自旋的量子模拟平台,观察到多体局域化 DTC 的标志性特征。我们演示了长寿命的倍周期振荡,并证实它们对一般初始状态是稳健的,从而在整个多体谱中显示出特征的时间晶体有序性。我们的结果与非平衡 Floquet 物质相的实现一致,并引入了一种基于固态自旋的可编程量子模拟器,用于探索多体物理。

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