English

Basis for time crystal phenomena in ultra-cold atoms bouncing on an oscillating mirror

Quantum Gases 2022-09-08 v1 Atomic Physics Classical Physics

Abstract

We consider classical dynamics of a 1D system of NN particles bouncing on an oscillating mirror in the presence of gravitational field. The particles behave like hard balls and they are resonantly driven by the mirror. We identify the manifolds the particles move on and derive the effective secular Hamiltonian for resonant motion of the particles. Proper choice of time periodic oscillations of the mirror allows for engineering of the effective behaviour of the particles. In particular, the system can behave like a NN-dimensional fictitious particle moving in an NN-dimensional crystalline structure. Our classical analysis constitutes a basis for quantum research of novel time crystal phenomena in ultra-cold atoms bouncing on an oscillating atom mirror.

Keywords

Cite

@article{arxiv.2207.02602,
  title  = {Basis for time crystal phenomena in ultra-cold atoms bouncing on an oscillating mirror},
  author = {Weronika Golletz and Andrzej Czarnecki and Krzysztof Sacha and Arkadiusz Kuros},
  journal= {arXiv preprint arXiv:2207.02602},
  year   = {2022}
}

Comments

14 pages, 3 figures