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Tunable Colossal Anomalous Hall Conductivity in Half-Metallic Material Induced by d-Wave-Like Spin-Orbit Gapoa mark
  • Choi, Joonyoung ;
  • Park, Jin Hong ;
  • Kyung, Wonshik ;
  • Kim, Younsik ;
  • Kim, Mi Kyung ;
  • Kwon, Junyoung ;
  • Kim, Changyoung ;
  • Rhim, Jun Won ;
  • Park, Se Young ;
  • Jo, Younjung
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Publication Year
2024-05-28
Publisher
John Wiley and Sons Inc
Citation
Advanced Science, Vol.11
Keyword
anomalous hall effectberry curvaturehalf-metals
Mesh Keyword
Anomalous hall effectsBerry curvatureHalf metalsHalf-metallic materialsHalf-metallicityHall conductivitySpin orbitsSpin torqueSpin-polarizedTunables
All Science Classification Codes (ASJC)
Medicine (miscellaneous)Chemical Engineering (all)Materials Science (all)Biochemistry, Genetics and Molecular Biology (miscellaneous)Engineering (all)Physics and Astronomy (all)
Abstract
The anomalous Hall conductivity (AHC) in magnetic materials, resulting from inverted band topology, has emerged as a key adjustable function in spin-torque devices and advanced magnetic sensors. Among systems with near-half-metallicity and broken time-reversal symmetry, cobalt disulfide (CoS2) has proven to be a material capable of significantly enhancing its AHC. In this study, the AHC of CoS2 is empirically assessed by manipulating the chemical potential through Fe- (hole) and Ni- (electron) doping. The primary mechanism underlying the colossal AHC is identified through the application of density functional theory and tight-binding analyses. The main source of this substantial AHC is traced to four spin-polarized massive Dirac dispersions in the kz = 0 plane of the Brillouin zone, located slightly below the Fermi level. In Co0.95Fe0.05S2, the AHC, which is directly proportional to the momentum-space integral of the Berry curvature (BC), reached a record-breaking value of 2507 Ω−1cm−1. This is because the BCs of the four Dirac dispersions all exhibit the same sign, a consequence of the d-wave-like spin-orbit coupling among spin-polarized eg orbitals.
ISSN
2198-3844
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/34035
DOI
https://doi.org/10.1002/advs.202307288
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Article
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Rhim, Jun Won 임준원
Department of Physics
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