Jafari R, Johannesson Henrik
Beijing Computational Science Research Center, Beijing 100094, China.
Department of Physics, University of Gothenburg, SE 412 96 Gothenburg, Sweden.
Phys Rev Lett. 2017 Jan 6;118(1):015701. doi: 10.1103/PhysRevLett.118.015701. Epub 2017 Jan 5.
A quantum phase transition is generally thought to imprint distinctive characteristics on the nonequilibrium dynamics of a closed quantum system. Specifically, the Loschmidt echo after a sudden quench to a quantum critical point-measuring the time dependence of the overlap between initial and time-evolved states-is expected to exhibit an accelerated relaxation followed by periodic revivals. We here introduce a new exactly solvable model, the extended Su-Schrieffer-Heeger model, the Loschmidt echo of which provides a counterexample. A parallell analysis of the quench dynamics of the three-site spin-interacting XY model allows us to pinpoint the conditions under which a periodic Loschmidt revival actually appears.
一般认为量子相变会在封闭量子系统的非平衡动力学上留下独特特征。具体而言,在突然淬灭到量子临界点后,洛施密特回波(测量初始态与时间演化态之间重叠的时间依赖性)预计会呈现加速弛豫,随后是周期性复苏。我们在此引入一个新的可精确求解的模型,即扩展的Su-Schrieffer-Heeger模型,其洛施密特回波提供了一个反例。对三格点自旋相互作用XY模型的淬灭动力学进行平行分析,使我们能够确定周期性洛施密特复苏实际出现的条件。