Kshetrimayum A, Goihl M, Kennes DM, Eisert J (2021)
Publication Type: Journal article
Publication year: 2021
Book Volume: 103
Article Number: 219902
Journal Issue: 22
DOI: 10.1103/PhysRevB.103.224205
We present fresh evidence for the presence of discrete quantum time crystals in two spatial dimensions. Discrete time crystals are intricate quantum systems that break discrete time translation symmetry in driven quantum many-body systems undergoing nonequilibrium dynamics. They are stabilized by many-body localization arising from disorder. We directly target the thermodynamic limit using instances of infinite tensor network states, and we implement disorder in a translationally invariant setting by introducing auxiliary systems at each site. We discuss how such disorder can be realized in programmable quantum simulators: This gives rise to the interesting situation in which a classical tensor network simulation can contribute to devising a blueprint of a quantum simulator featuring prethermal time crystalline dynamics, one that will ultimately have to be built in order to explore the stability of this phase of matter for long times.
APA:
Kshetrimayum, A., Goihl, M., Kennes, D.M., & Eisert, J. (2021). Quantum time crystals with programmable disorder in higher dimensions. Physical Review B, 103(22). https://dx.doi.org/10.1103/PhysRevB.103.224205
MLA:
Kshetrimayum, A., et al. "Quantum time crystals with programmable disorder in higher dimensions." Physical Review B 103.22 (2021).
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