论文标题
floquet Dynalial量子相变的扩展XY模型:非绝热至绝热拓扑转换
Floquet dynamical quantum phase transition in the extended XY model: nonadiabatic to adiabatic topological transition
论文作者
论文摘要
我们在定期与时间相关的扩展XY模型中研究了纯态和混合状态浮动动力学量子相变(DQPT)。我们确切地表明,所提出的相互作用旋转的浮子哈密顿量可以表示为由有效的依赖性磁场(Schwinger-Rabi模型)施加的非相互作用的准旋转总和。计算出的Chern数字表明,从非绝热到绝热制度存在拓扑过渡。在绝热状态下,准旋转追踪依赖时间的有效磁场,然后在上下旋转状态之间振荡。尽管在非绝热状态下,准旋转无法遵循依赖时间的有效磁场并感觉到平均磁场。我们发现准旋转经历绝热循环过程的驾驶频率范围。此外,我们获得了提议的浮雕系统的loschmidt振幅和广义的loschmidt振幅的确切表达。结果表明,当系统绝热地演变时,纯状和混合状态动态相变会发生。换句话说,Floquet DQPT出现的最小驾驶频率等于从非绝热到绝热状态过渡所需的阈值频率。
We investigate both pure and mixed states Floquet dynamical quantum phase transition (DQPT) in the periodically time-dependent extended XY model. We exactly show that the proposed Floquet Hamiltonian of interacting spins can be expressed as a sum of noninteracting quasi-spins imposed by an effective time dependent magnetic field (Schwinger-Rabi model). The calculated Chern number indicates that there is a topological transition from nonadiabatic to adiabatic regime. In the adiabatic regime, the quasi-spins trace the time dependent effective magnetic field and then oscillate between spin up and down states. While in the nonadiabatic regime, the quasi-spins cannot follow the time dependent effective magnetic field and feel an average magnetic field. We find the range of driving frequency over which the quasi-spins experience adiabatic cyclic processes. Moreover, we obtain the exact expression of the Loschmidt amplitude and generalized Loschmidt amplitude of the proposed Floquet system. The results represent that both pure and mixed states dynamical phase transition occurs when the system evolves adiabatically. In other words, the minimum required driving frequency for the appearance of Floquet DQPT is equal to the threshold frequency needed for transition from nonadiabatic to adiabatic regime.