2020
DOI: 10.1103/physrevlett.125.216402
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Radial Spin Texture of the Weyl Fermions in Chiral Tellurium

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Cited by 66 publications
(46 citation statements)
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“…Different shapes of spin texture (ST) were observed, including radial texture 𝑆 !" ∥ 𝑘 (known as Weyl ST) [5][6][7], or the tangential texture 𝑆 !" ⊥ 𝑘 (known as 'Rashba ST') [8][9][10], or the tangential--radial texture (known as 'Dresselhaus ST') [11,12].…”
mentioning
confidence: 99%
“…Different shapes of spin texture (ST) were observed, including radial texture 𝑆 !" ∥ 𝑘 (known as Weyl ST) [5][6][7], or the tangential texture 𝑆 !" ⊥ 𝑘 (known as 'Rashba ST') [8][9][10], or the tangential--radial texture (known as 'Dresselhaus ST') [11,12].…”
mentioning
confidence: 99%
“…Previously, we have applied this strategy to hexagonal, trigonal, and tetragonal crystals [16][17][18]. These investigations have uncovered, among other things, the accordion states in trigonal Te [36], and identified ZrIrSn and NaSn 5 as nodal line materials with twofold and fourfold Weyl lines, respectively [16,18]. In this paper, we continue this classification program by investigating symmetry-enforced band crossings in orthorhombic crystals.…”
Section: Introductionmentioning
confidence: 94%
“…Depending on whether or not the little groups of the k points of the enforced nodal degeneracies (as well as the full space group) contain rotoinversion symmetries, the ESFD semimetals identified in this section may further be classified as topologically chiral or achiral [120,121]. ESFD phases in structurally chiral crystals have in particular been highlighted for hosting monopole-like spin textures [121,187], exhibiting photoresponse signatures of topological chirality [122,[188][189][190][191], and as possible venues for realizing topological superconductivity [192][193][194].…”
Section: A Esfd-classified Semimetalsmentioning
confidence: 99%