arXiv · 1903.02311
Classical many-body time crystals
Abstract
Discrete time crystals are a many-body state of matter where the extensive system's dynamics are slower than the forces acting on it. Nowadays, there is a growing debate regarding the specific properties required to demonstrate such a many-body state, alongside several experimental realizations. In this work, we provide a simple and pedagogical framework by which to obtain many-body time crystals using parametrically coupled resonators. In our analysis, we use classical period-doubling bifurcation theory and present a clear distinction between single-mode time-translation symmetry breaking and a situation where an extensive number of degrees of freedom undergo the transition. We experimentally demonstrate this paradigm using coupled mechanical oscillators, thus providing a clear route for time crystals realizations in real materials.
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Toni L. Heugel, Matthias Oscity, Alexander Eichler, Oded Zilberberg, R. Chitra. 2019-03-06. Classical many-body time crystals. https://doi.org/10.1103/physrevlett.123.124301
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