Ye Bingtian, Machado Francisco, Yao Norman Y
Department of Physics, University of California, Berkeley, California 94720, USA.
Materials Science Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.
Phys Rev Lett. 2021 Oct 1;127(14):140603. doi: 10.1103/PhysRevLett.127.140603.
We demonstrate that the prethermal regime of periodically driven (Floquet), classical many-body systems can host nonequilibrium phases of matter. In particular, we show that there exists an effective Hamiltonian that captures the dynamics of ensembles of classical trajectories despite the breakdown of this description at the single trajectory level. In addition, we prove that the effective Hamiltonian can host emergent symmetries protected by the discrete time-translation symmetry of the drive. The spontaneous breaking of such an emergent symmetry leads to a subharmonic response, characteristic of time crystalline order, that survives to exponentially late times in the frequency of the drive. To this end, we numerically demonstrate the existence of classical prethermal time crystals in systems with different dimensionalities and ranges of interaction. Extensions to higher order and fractional time crystals are also discussed.
我们证明,周期性驱动(弗洛凯)的经典多体系统的预热阶段可以容纳物质的非平衡相。特别地,我们表明存在一个有效的哈密顿量,它能够捕捉经典轨迹系综的动力学,尽管在单个轨迹层面这种描述会失效。此外,我们证明有效的哈密顿量可以拥有受驱动的离散时间平移对称性保护的涌现对称性。这种涌现对称性的自发破缺会导致次谐波响应,这是时间晶体序的特征,并且在驱动频率下能存活到指数级的长时间。为此,我们通过数值方法证明了在具有不同维度和相互作用范围的系统中存在经典预热时间晶体。我们还讨论了向高阶和分数时间晶体的扩展。