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首页> 外文期刊>Journal of Physics. Condensed Matter >Strain tuned topology in the Haldane and the modified Haldane models
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Strain tuned topology in the Haldane and the modified Haldane models

机译:卤代的应变调谐拓扑和改进的卤代模型

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摘要

We study the interplay between a uniaxial strain and the topology of the Haldane and the modified Haldane models which, respectively, exhibit chiral and antichiral edge modes. The latter were, recently, predicted by Colomes and Franz (2018 Phys. Rev. Lett. 120 086603) and expected to take place in the transition metal dichalcogenides. Using the continuum approximation and a tight-binding approach, we investigate the effect of the strain on the topological phases and the corresponding edge modes. We show that the strain could induce transitions between topological phases with opposite Chern numbers or tune a topological phase into a trivial one. As a consequence, the dispersions of the chiral and antichiral edge modes are found to be strain dependent. The strain may reverse the direction of propagation of these modes and eventually destroy them. This effect may be used for strain-tunable edge currents in topological insulators and two-dimensional transition metal dichalcogenides.
机译:我们研究了单轴应变与卤代的拓扑和修饰的卤代模型之间的相互作用,分别表现出手性和抗刻度边缘模式。 最近,后者由集团和Franz预测(2018次物理.10086603)预期,并预期在过渡金属二甲甲基化物中进行。 使用连续近似和紧密结合方法,我们研究了应变对拓扑相的影响和相应的边缘模式。 我们表明该应变可以诱导拓扑相之间的转变,与相反的CHERN编号或将拓扑阶段调整成琐碎的阶段。 结果,发现手性和抗灰度边缘模式的分散体是株的依赖性。 该应变可以扭转这些模式的传播方向,最终摧毁它们。 这种效果可用于拓扑绝缘体中的应变可调边缘电流和二维过渡金属二甲硅藻。

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