English

Observation of a phase transition from a continuous to a discrete time crystal

Quantum Physics 2025-06-06 v2 Quantum Gases Adaptation and Self-Organizing Systems

Abstract

Discrete (DTCs) and continuous time crystals (CTCs) are novel dynamical many-body states, that are characterized by robust self-sustained oscillations, emerging via spontaneous breaking of discrete or continuous time translation symmetry. DTCs are periodically driven systems that oscillate with a subharmonic of the external drive, while CTCs are continuously driven and oscillate with a frequency intrinsic to the system. Here, we explore a phase transition from a continuous time crystal to a discrete time crystal. A CTC with a characteristic oscillation frequency ωCTC\omega_\mathrm{CTC} is prepared in a continuously pumped atom-cavity system. Modulating the pump intensity of the CTC with a frequency ωdr\omega_{\mathrm{dr}} close to 2ωCTC2\,\omega_\mathrm{CTC} leads to robust locking of ωCTC\omega_\mathrm{CTC} to ωdr/2\omega_{\mathrm{dr}}/2, and hence a DTC arises. This phase transition in a quantum many-body system is related to subharmonic injection locking of non-linear mechanical and electronic oscillators or lasers.

Keywords

Cite

@article{arxiv.2402.12378,
  title  = {Observation of a phase transition from a continuous to a discrete time crystal},
  author = {Phatthamon Kongkhambut and Jayson G. Cosme and Jim Skulte and Michelle A. Moreno Armijos and Ludwig Mathey and Andreas Hemmerich and Hans Keßler},
  journal= {arXiv preprint arXiv:2402.12378},
  year   = {2025}
}