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Realization of a discrete time crystal on 57 qubits of a quantum computer

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arxiv 2105.06632 v3 pith:DT3QNOOX submitted 2021-05-14 quant-ph cond-mat.mes-hallcond-mat.str-el

classification quant-phcond-mat.mes-hallcond-mat.str-el
keywords timecrystaldiscreteinitialsystemcomputerdrivendynamical
verification ladder T0 review T1 audit T2 compute T3 formal

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Novel dynamical phases that violate ergodicity have been a subject of extensive research in recent years. A periodically driven system is naively expected to lose all memory of its initial state due to thermalization, yet this can be avoided in the presence of many-body localization. A discrete time crystal represents a driven system whose local observables spontaneously break time translation symmetry and retain memory of the initial state indefinitely. Here we report the observation of a discrete time crystal on a chain consisting of 57 superconducting qubits on a state--of--the--art quantum computer. We probe random initial states and compare the cases of vanishing and finite disorder to distinguish many-body localization from pre-thermal dynamics. We further report results on the dynamical phase transition between the discrete time crystal and a thermal regime, which is observed via critical fluctuations in the system's sub-harmonic frequency response and a significant speed-up of spin depolarisation.

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