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arxiv: 1501.05660 · v1 · submitted 2015-01-22 · 🪐 quant-ph · cond-mat.quant-gas

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Dynamical Stability of a Many-body Kapitza Pendulum

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classification 🪐 quant-ph cond-mat.quant-gas
keywords absorbinginteractingkapitzamany-bodypendulumperiodically-drivenstabilitystate
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We consider a many-body generalization of the Kapitza pendulum: the periodically-driven sine-Gordon model. We show that this interacting system is dynamically stable to periodic drives with finite frequency and amplitude. This finding is in contrast to the common belief that periodically-driven unbounded interacting systems should always tend to an absorbing infinite-temperature state. The transition to an unstable absorbing state is described by a change in the sign of the kinetic term in the effective Floquet Hamiltonian and controlled by the short-wavelength degrees of freedom. We investigate the stability phase diagram through an analytic high-frequency expansion, a self-consistent variational approach, and a numeric semiclassical calculations. Classical and quantum experiments are proposed to verify the validity of our results.

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