Journal Article FZJ-2023-02722

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Geometry-Induced Spin Filtering in Photoemission Maps from WTe 2 Surface States

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2023
APS College Park, Md.

Physical review letters 130(14), 146401 () [10.1103/PhysRevLett.130.146401]

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Abstract: We demonstrate that an important quantum material WTe2 exhibits a new type of geometry-induced spin filtering effect in photoemission, stemming from low symmetry that is responsible for its exotic transport properties. Through the laser-driven spin-polarized angle-resolved photoemission Fermi surface mapping, we showcase highly asymmetric spin textures of electrons photoemitted from the surface states of WTe2. Such asymmetries are not present in the initial state spin textures, which are bound by the time-reversal and crystal lattice mirror plane symmetries. The findings are reproduced qualitatively by theoretical modeling within the one-step model photoemission formalism. The effect could be understood within the free-electron final state model as an interference due to emission from different atomic sites. The observed effect is a manifestation of time-reversal symmetry breaking of the initial state in the photoemission process, and as such it cannot be eliminated, but only its magnitude influenced, by special experimental geometries.

Classification:

Contributing Institute(s):
  1. Quanten-Theorie der Materialien (PGI-1)
  2. Quanten-Theorie der Materialien (IAS-1)
  3. Elektronische Eigenschaften (PGI-6)
Research Program(s):
  1. 5211 - Topological Matter (POF4-521) (POF4-521)
  2. DFG project 390534769 - EXC 2004: Materie und Licht für Quanteninformation (ML4Q) (390534769) (390534769)

Appears in the scientific report 2023
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Medline ; Creative Commons Attribution CC BY 4.0 ; OpenAccess ; Clarivate Analytics Master Journal List ; Current Contents - Physical, Chemical and Earth Sciences ; Ebsco Academic Search ; IF >= 5 ; JCR ; NationallizenzNationallizenz ; SCOPUS ; Web of Science Core Collection
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Institutssammlungen > PGI > PGI-6
Institutssammlungen > PGI > PGI-1
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Open Access

 Datensatz erzeugt am 2023-07-18, letzte Änderung am 2023-10-27


OpenAccess:
PhysRevLett.130.146401 - Volltext herunterladen PDF
2210.10870 - Volltext herunterladen PDF
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