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Period-n discrete time crystals and quasicrystals with ultracold bosons

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Title: Period-n discrete time crystals and quasicrystals with ultracold bosons
Authors: Pizzi, A
Knolle, J
Nunnenkamp, A
Item Type: Journal Article
Abstract: We investigate the out-of-equilibrium properties of a system of interacting bosons in a ring lattice. We present a Floquet driving that induces clockwise (counterclockwise) circulation of the particles among the odd (even) sites of the ring which can be mapped to a fully connected model of clocks of two counterrotating species. The clocklike motion of the particles is at the core of a period- n discrete time crystal where L = 2 n is the number of lattice sites. In the presence of a “staircaselike” on-site potential, we report the emergence of a second characteristic timescale in addition to the period n -tupling. This new timescale depends on the microscopic parameters of the Hamiltonian and is incommensurate with the Floquet period, underpinning a dynamical phase we call “time quasicrystal.” The rich dynamical phase diagram also features a thermal phase and an oscillatory phase, all of which we investigate and characterize. Our simple, yet rich model can be realized with state-of-the-art ultracold atoms experiments.
Issue Date: 9-Oct-2019
Date of Acceptance: 1-Oct-2019
URI: http://hdl.handle.net/10044/1/77805
DOI: 10.1103/PhysRevLett.123.150601
ISSN: 0031-9007
Publisher: American Physical Society
Start Page: 150601-1
End Page: 150601-6
Journal / Book Title: Physical Review Letters
Volume: 123
Issue: 15
Copyright Statement: © 2019 American Physical Society
Keywords: Science & Technology
Physical Sciences
Physics, Multidisciplinary
Physics
ORDER
Science & Technology
Physical Sciences
Physics, Multidisciplinary
Physics
ORDER
cond-mat.quant-gas
cond-mat.quant-gas
quant-ph
General Physics
01 Mathematical Sciences
02 Physical Sciences
09 Engineering
Publication Status: Published
Article Number: ARTN 150601
Online Publication Date: 2019-10-09
Appears in Collections:Condensed Matter Theory
Physics