English

Higher-order and fractional discrete time crystals in Floquet-driven Rydberg atoms

Quantum Gases 2024-10-22 v4 Atomic Physics

Abstract

Higher-order and fractional discrete time crystals (DTCs) are exotic phases of matter where the discrete time translation symmetry is broken into higher-order and non-integer category. Generation of these unique DTCs has been widely studied theoretically in different systems. However, no current experimental methods can probe these higher-order and fractional DTCs in any quantum many-body systems. We demonstrate an experimental approach to observe higher-order and fractional DTCs in Floquet-driven Rydberg atomic gases. We have discovered multiple nn-DTCs with integer values of nn = 2, 3, and 4, and others ranging up to 14, along with fractional nn-DTCs with nn values beyond the integers. The system response can transition between adjacent integer DTCs, during which the fractional DTCs are investigated. Study of higher-order and fractional DTCs expands fundamental knowledge of non-equilibrium dynamics and is promising for discovery of more complex temporal symmetries beyond the single discrete time translation symmetry.

Keywords

Cite

@article{arxiv.2402.13657,
  title  = {Higher-order and fractional discrete time crystals in Floquet-driven Rydberg atoms},
  author = {Bang Liu and Li-Hua Zhang and Qi-Feng Wang and Yu Ma and Tian-Yu Han and Jun Zhang and Zheng-Yuan Zhang and Shi-Yao Shao and Qing Li and Han-Chao Chen and Bao-Sen Shi and Dong-Sheng Ding},
  journal= {arXiv preprint arXiv:2402.13657},
  year   = {2024}
}

Comments

17 pages, 10 figures, to be published in Nature Communications