T.C.M. Group, Cavendish Laboratory, University of Cambridge, JJ Thomson Avenue, Cambridge, CB3 0HE, United Kingdom.
Phys Rev Lett. 2018 Aug 31;121(9):090401. doi: 10.1103/PhysRevLett.121.090401.
We study the topological properties of one-dimensional systems undergoing unitary time evolution. We show that symmetries possessed both by the initial wave function and by the Hamiltonian at all times may not be present in the time-dependent wave function-a phenomenon which we dub "dynamically induced symmetry breaking." This leads to the possibility of a time-varying bulk index after quenching within noninteracting gapped topological phases. The consequences are observable experimentally through particle transport measurements. With reference to the entanglement spectrum, we explain how the topology of the wave function can change out of equilibrium, both for noninteracting fermions and for symmetry-protected topological phases protected by antiunitary symmetries.
我们研究了经历幺正时间演化的一维系统的拓扑性质。我们表明,初始波函数和哈密顿量在所有时间都具有的对称性可能不存在于时变波函数中——我们称之为“动态诱导对称破缺”。这导致在非相互作用的带隙拓扑相中淬火后,体指数可能随时间变化。通过粒子输运测量,可以在实验中观察到这一结果。我们参考纠缠谱,解释了非相互作用费米子和受反幺正对称性保护的对称保护拓扑相的波函数的拓扑结构如何在非平衡条件下发生变化。