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Period doubling in period-one steady states
Journal article   Peer reviewed

Period doubling in period-one steady states

Reuben R. W. Wang, Bo Xing, Gabriel G. Carlo and Dario Poletti
Physical review. E, Vol.97(2), p.020202
02/2018
PMID: 29548194

Abstract

Physical Sciences Physics Physics, Fluids & Plasmas Physics, Mathematical Science & Technology
Nonlinear classical dissipative systems present a rich phenomenology in their "route to chaos," including period doubling, i.e., the system evolves with a period which is twice that of the driving. However, typically the attractor of a periodically driven quantum open system evolves with a period which exactly matches that of the driving. Here, we analyze a periodically driven many-body open quantum system whose classical correspondent presents period doubling. We show that by studying the dynamical correlations, it is possible to show the occurrence of period doubling in the quantum (period-one) steady state. We also discuss that such systems are natural candidates for clean and intrinsically robust Floquet time crystals.

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