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五边形材料中的二维外尔点和节线及其光学响应。

Two-dimensional Weyl points and nodal lines in pentagonal materials and their optical response.

作者信息

Bravo Sergio, Pacheco M, Nuñez V, Correa J D, Chico Leonor

机构信息

Departamento de Física, Universidad Técnica Federico Santa María, Valparaíso, Chile.

出版信息

Nanoscale. 2021 Mar 28;13(12):6117-6128. doi: 10.1039/d1nr00064k. Epub 2021 Mar 22.

Abstract

Two-dimensional pentagonal structures based on the Cairo tiling are the basis of a family of layered materials with appealing physical properties. In this work we present a theoretical study of the symmetry-based electronic and optical properties of these pentagonal materials. We provide a complete classification of the space groups that support pentagonal structures for binary and ternary systems. By means of first-principles calculations, the electronic band structures and the local spin textures in momentum space are analyzed for four examples of these materials, namely, PdSeTe, PdSeS, InP and GeBi, all of which are dynamically stable. Our results show that pentagonal structures can be realized in chiral and achiral lattices with Weyl nodes pinned at high-symmetry points and nodal lines along the Brillouin zone boundary; these degeneracies are protected by the combined action of crystalline and time-reversal symmetries. Additionally, we computed the linear and nonlinear optical features of the proposed pentagonal materials and discuss some particular features such as the shift current, which shows an enhancement due to the presence of nodal lines and points, and their possible applications.

摘要

基于开罗镶嵌的二维五角形结构是一类具有吸引人的物理性质的层状材料的基础。在这项工作中,我们对这些五角形材料基于对称性的电子和光学性质进行了理论研究。我们对支持二元和三元系统中五角形结构的空间群进行了完整分类。通过第一性原理计算,分析了这些材料的四个例子,即PdSeTe、PdSeS、InP和GeBi在动量空间中的电子能带结构和局部自旋纹理,所有这些材料都是动态稳定的。我们的结果表明,五角形结构可以在手性和非手性晶格中实现,其中外尔节点固定在高对称点,节点线沿着布里渊区边界;这些简并性受到晶体对称性和时间反演对称性的联合作用的保护。此外,我们计算了所提出的五角形材料的线性和非线性光学特性,并讨论了一些特殊特性,如由于节点线和节点的存在而增强的位移电流及其可能的应用。

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