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Observation of Time Crystal in a Spin Maser System

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arxiv 2406.15017 v2 pith:MA6EYYZY submitted 2024-06-21 physics.atom-ph cond-mat.quant-gas

classification physics.atom-phcond-mat.quant-gas
keywords crystaltimephasesysteminteractionmaserspinfeedback
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abstract

Pair interaction potentials between atoms in a crystal are in general non-monotonic in distance, with a local minimum whose position gives the lattice constant of the crystal. A temporal analogue of this idea of crystal formation is still pending despite intensive studies on the time crystal phase. In a hybrid spin maser system with a time delay feedback, we report the observation of a time crystal induced by a retarded interaction with a characteristic time scale. This nonequilibrium phase features a self-sustained oscillation with an emergent frequency other than the intrinsic Larmor precession frequency of the spin maser system. It is shown that the amplitude of the oscillation is robust against perturbation, while its time phase randomly distributes from 0 to $2\pi$ for different realizations, a signature of spontaneous time translation symmetry breaking. This time crystal phase emerges only when the feedback strength exceeds a critical value, at which the system experiences a first order phase transition. Such a retarded interaction induced time crystal is closer to the idea of crystal, compared to other time crystal realizations.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Nonlinear dynamics in an artificial feedback spin maser

    physics.atom-ph 2024-11 conditional novelty 6.0 of 10

    Feedback-driven Bloch equation simulations show strong feedback produces harmonics, chaos, and frequency combs in spin masers, and a pulsed protocol creates a magnetic comb.

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