English

A general interpretation of nonlinear connected time crystals: quantum self-sustaining combined with quantum synchronization

Quantum Physics 2026-01-29 v1

Abstract

Although classical nonlinear dynamics suggests that sufficiently strong nonlinearity can sustain oscillations, quantization of such model typically yields a time-independent steady state that respects time-translation symmetry and thus precludes time-crystal behavior. We identify dephasing as the primary mechanism enforcing this symmetry, which can be suppressed by intercomponent phase correlations. Consequently, a sufficient condition for realizing a continuous time crystal is a nonlinear quantum self-sustaining system exhibiting quantum synchronization among its constituents. As a concrete example, we demonstrate spontaneous oscillations in a synchronized array of van der Pol oscillators, corroborated by both semiclassical dynamics and the quantum Liouville spectrum. These results reduce the identification of time crystals in many-body systems to the evaluation of only two-body correlations and provide a framework for classifying uncorrelated time crystals as trivial.

Keywords

Cite

@article{arxiv.2601.20186,
  title  = {A general interpretation of nonlinear connected time crystals: quantum self-sustaining combined with quantum synchronization},
  author = {Song-hai Li and Najmeh Es'haqi-Sani and Xingli Li and Wenlin Li},
  journal= {arXiv preprint arXiv:2601.20186},
  year   = {2026}
}
R2 v1 2026-07-01T09:23:09.050Z