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Robust Topological Nodal-Line Semimetals from Periodic Vacancies in Two-Dimensional Materials

Fujun Liu, Fanyao Qu, Igor Žutić, Shijie Xie, Desheng Liu, A. L. A. Fonseca, Mariana Malard

2021The Journal of Physical Chemistry Letters13 citationsDOIOpen Access PDF

Abstract

A nodal-line semimetal (NLSM) is suppressed in the presence of spin-orbit coupling unless it is protected by a nonsymmorphic symmetry. We show that two-dimensional (2D) materials can realize robust NLSMs when vacancies are introduced on the lattice. As a case study we investigate borophene, a boron honeycomb-like sheet. While the Dirac cones of pristine borophene are shown to be gapped out by spin-orbit coupling and by magnetic exchange, robust nodal lines (NLs) emerge in the spectrum when selected atoms are removed. We propose an effective 2D model and a symmetry analysis to demonstrate that these NLs are topological and protected by a nonsymmorphic glide plane. Our findings offer a paradigm shift to the design of NLSMs: instead of searching for nonsymmorphic materials, robust NLSMs may be realized simply by removing atoms from ordinary symmorphic crystals.

Topics & Concepts

Condensed matter physicsSemimetalCoupling (piping)PhysicsLattice (music)Topology (electrical circuits)Dirac (video compression format)Symmetry (geometry)Line (geometry)NODALBoropheneMaterials scienceQuantum mechanicsGeometryDensity functional theoryBand gapMathematicsCombinatoricsNeutrinoAnatomyMedicineMetallurgyAcousticsTopological Materials and PhenomenaGraphene research and applications2D Materials and Applications
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