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Stroboscopic symmetry-protected topological phases

机译:频闪对称对称保护的拓扑相

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摘要

Symmetry-protected topological (SPT) phases of matter have been the focus of many recent theoretical investigations, but controlled mechanisms for engineering them have so far been elusive. In this work, we demonstrate that by driving interacting spin systems periodically in time and tuning the available parameters, one can realize lattice models for bosonic SPT phases in the limit where the driving frequency is large. We provide concrete examples of this construction in one and two dimensions, and discuss signatures of these phases in stroboscopic measurements of local observables.
机译:物质的对称保护拓扑(SPT)阶段一直是许多最近的理论研究的重点,但迄今为止,对其进行工程化的受控机制一直难以捉摸。在这项工作中,我们证明了通过定期驱动相互作用的自旋系统并调整可用参数,可以在驱动频率较大的极限中实现Bosonic SPT相的晶格模型。我们将在一维和二维中提供此构造的具体示例,并在频闪观测中对局部可观察物的测量中讨论这些阶段的特征。

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