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Discrete time crystal enabled by Stark many-body localization

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arxiv 2208.02866 v2 pith:YZ2HEAA2 submitted 2022-08-04 cond-mat.str-el cond-mat.dis-nnquant-ph

Discrete time crystal enabled by Stark many-body localization

classification cond-mat.str-el cond-mat.dis-nnquant-ph
keywords averagecrystaldiscretedisorderlocalizationmany-bodymodelorder
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Discrete time crystal (DTC) has recently attracted increasing attention, but most DTC models and their properties are only revealed after disorder average. In this Letter, we propose a simple disorder-free periodically driven model that exhibits nontrivial DTC order stabilized by Stark many-body localization (MBL). We demonstrate the existence of DTC phase by analytical analysis from perturbation theory and convincing numerical evidence from observable dynamics. The new DTC model paves a new promising way for further experiments and deepens our understanding of DTC. Since the DTC order doesn't require special quantum state preparation and the strong disorder average, it can be naturally realized on the noisy intermediate-scale quantum (NISQ) hardware with much fewer resources and repetitions. Moreover, besides the robust subharmonic response, there are other novel robust beating oscillations in Stark-MBL DTC phase which are absent in random or quasi-periodic MBL DTC.

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  1. Integrable Floquet Time Crystals in One Dimension

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    Integrable Floquet time crystals realized in 1D quadratic lattice models from spin chains, with rigid DTC phase, phase diagram showing transitions to Floquet paramagnet, and exponentially diverging lifetime via finite...