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Floquet topological semimetal with a helical nodal line in 2+1 dimensions

机译:具有2 + 1尺寸螺旋节线的浮球拓扑半金属

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Topological semimetals with a nodal line is a class of topological matter extending the concept of topological matter beyond topological insulators and Weyl/Dirac semimetals. Here we show theoretically that a Floquet topological semimetal with a helical nodal line can be generated in 2+1 dimensions by irradiating graphene or the surface of a topological insulator with circularly polarized light. The helical nodal line is the nodal line running across the Brillouin zone with helical winding. Specifically, it is shown that the dynamics of irradiated graphene is described by the time Stark Hamiltonian, which can host a Floquet topological insulator and a weakly driven Floquet topological semimetal with a helical nodal line in the high and low frequency limits, respectively. One of the most striking features of the Floquet topological semimetal at low frequency is that the Berry phase accumulated along the time direction, also known as the Zak phase, has a topological discontinuity of pi across the projected helical nodal line. It is predicted that such a topological discontinuity of the Berry phase manifests itself as the topological discontinuity of the Floquet states. At intermediate frequency, this topological discontinuity can create an interesting change of patterns in the quasienergy dispersion of the Floquet states.
机译:具有结线的拓扑半金属是一类拓扑物质,将拓扑物质的概念扩展到拓扑绝缘体和Weyl / Dirac半金属之外。在这里,我们从理论上证明,通过用圆偏振光辐照石墨烯或拓扑绝缘体的表面,可以在2 + 1维度上生成具有螺旋节线的Floquet拓扑半金属。螺旋节点线是指在整个布里渊区带螺旋缠绕的节点线。具体而言,表明了被辐照的石墨烯的动力学由时间史塔克·哈密顿量来描述,该时间可以承载Floquet拓扑绝缘体和弱驱动的Floquet拓扑半金属,分别在高频和低频范围内具有螺旋节点线。 Floquet拓扑半金属在低频下最显着的特征之一是,沿时间方向累积的Berry相(也称为Zak相)在投影的螺旋结线上具有pi的拓扑不连续性。据预测,Berry相的这种拓扑不连续性表现为Floquet状态的拓扑不连续性。在中频处,这种拓扑不连续性可以在Floquet状态的准能量色散中产生有趣的模式变化。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2019年第11期|115136.1-115136.12|共12页
  • 作者单位

    Korea Inst Adv Study, Sch Phys, Seoul 02455, South Korea;

    Korea Inst Adv Study, Quanturn Universe Ctr, Seoul 02455, South Korea;

    Korea Inst Adv Study, Sch Phys, Seoul 02455, South Korea|Korea Inst Adv Study, Quanturn Universe Ctr, Seoul 02455, South Korea;

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