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首页> 外文期刊>Physical Review, A >Discrete time crystal in globally driven interacting quantum systems without disorder
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Discrete time crystal in globally driven interacting quantum systems without disorder

机译:全球驱动的离散时间晶体在没有紊乱的情况下的相互作用的量子系统

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Time crystals in periodically driven systems have initially been studied assuming either the ability to quench the Hamiltonian between different many-body regimes, the presence of disorder or long-range interactions. Here we propose the simplest scheme to observe discrete time crystal dynamics in a one-dimensional driven quantum system of the Ising type with short-range interactions and no disorder. The system is subject only to a periodic kick by a global magnetic field, and no extra Hamiltonian quenching is performed. We analyze the emerging time crystal stabilizing mechanisms via extensive numerics as well as using an analytic approach based on an off-resonant transition model. Due to the simplicity of the driven Ising model, our proposal can be implemented with current experimental platforms including trapped ions, Rydberg atoms, and superconducting circuits.
机译:假设能够在不同许多身体制度之间淬火Hamiltonian的能力,存在紊乱或远程相互作用的能力,最初研究了定期驱动系统中的时间晶体。 在这里,我们提出了一种最简单的方案,以观察到具有短距离相互作用和无病症的ising类型的一维驱动量子系统中的离散时间晶体动态。 该系统仅受到全球磁场的周期性踢球,并且没有执行额外的哈密顿淬火。 我们通过广泛的编程分析了新兴时间晶体稳定机制,以及基于脱谐转换模型的分析方法。 由于驱动介绍模型的简单性,我们的提案可以用当前的实验平台来实现,包括捕获离子,雷德伯格原子和超导电路。

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