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Nodal Line Spin-Gapless Semimetals and High-Quality Candidate Materials

Run‐Wu Zhang, Zeying Zhang, Cheng‐Cheng Liu, Yugui Yao

2020Physical Review Letters71 citationsDOIOpen Access PDF

Abstract

Spin-gapless semimetals (SGSMs), which generate 100% spin polarization, are viewed as promising semi-half-metals in spintronics with high speed and low consumption. We propose and characterize a new Z_{2} class of topological nodal line (TNL) in SGSMs. The proposed TNLSGSMs are protected by space-time inversion symmetry or glide mirror symmetry with two-dimensional (2D) fully spin-polarized nearly flat surface states. Based on first-principles calculations and effective model analysis, a series of high-quality materials with R3[over ¯]c and R3c space groups are predicted to realize such TNLSGSMs (chainlike). The 2D fully spin-polarized nearly flat surface states may provide a route to achieving equal spin pairing topological superconductivity as well as topological catalysts.

Topics & Concepts

Gapless playbackPoint reflectionSpintronicsPhysicsTopology (electrical circuits)PairingCondensed matter physicsSpin (aerodynamics)SemimetalSuperconductivityBand gapThermodynamicsFerromagnetismCombinatoricsMathematicsTopological Materials and PhenomenaGraphene research and applicationsAdvanced Condensed Matter Physics
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