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首页> 外文期刊>Laser physics letters >Topological phase transition of the generalized Su-Schrieffer-Heeger model based on a frequency-modulated circuit quantum electrodynamics lattice
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Topological phase transition of the generalized Su-Schrieffer-Heeger model based on a frequency-modulated circuit quantum electrodynamics lattice

机译:基于频率调制电路量子电动力格栅的广义SU-Schrieffer-Heeger模型的拓扑相变

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We propose a scheme to investigate the topological phase transition in the generalized one-dimensional Su-Schrieffer-Heeger (SSH) model based on a circuit quantum electrodynamics (QED) lattice with frequency modulation. We find that, if we keep the resonant counter rotating wave terms to map the p-wave superconducting pairing terms in the topological superconductor by dint of frequency modulation, the circuit QED lattice can be equivalent to the SSH model with p-wave superconducting pairing terms. The numerical results show that the existence of the superconducting pairing terms cannot close the energy gap of the SSH model within the feasible range of parameters, which means that the superconducting pairing terms cannot induce the topological phase transition. To induce the topological phase transition, we add the next-nearest-neighboring (NNN) interaction into the circuit QED-based SSH model simultaneously. We find that, for a given superconducting pairing strength, the appropriate selection of the NNN interaction can induce closing of the energy gap. It indicates that a new topological phase transition between the topologically nontrivial SSH phase and the topologically trivial SSH phase occurs in the SSH model. Our scheme provides a means to explore the topological SSH phase transition based on a circuit QED lattice with frequency modulation.
机译:我们提出了一种基于具有频率调制的电路量子电动力学(QED)格子的广义一维Su-Schrieffer-Heeger(SSH)模型中的拓扑相变的方案。我们发现,如果我们通过DINT频率调制保持谐振计数器旋转波术语以将P波超导配对术语映射拓扑超导体,则电路QED格子可以等同于具有P波超导配对项的SSH模型。数值结果表明,超导配对术语的存在不能在可行的参数范围内闭合SSH模型的能隙,这意味着超导配对术语不能引起拓扑相位转变。为了诱导拓扑相变,我们同时将下一个最近相邻(NNN)交互添加到电路QED的SSH模型中。 We find that, for a given superconducting pairing strength, the appropriate selection of the NNN interaction can induce closing of the energy gap.它表明,在SSH模型中发生拓扑非计时SSH相位和拓扑普通SSH相之间的新拓扑相转变。我们的方案提供了一种探讨基于具有频率调制的电路QED格子的拓扑SSH相变的方法。

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