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Tunable Colossal Anomalous Hall Conductivity in Half-Metallic Material Induced by d-Wave-Like Spin-Orbit Gap
- Choi, Joonyoung;
- Park, Jin-Hong;
- Kyung, Wonshik;
- Kim, Younsik;
- Kim, Mi Kyung;
- ... Park, Se Young;
- 외 4명
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3초록
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 k(z) = 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 Omega(-1)cm(-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 e(g) orbitals.
키워드
- 제목
- Tunable Colossal Anomalous Hall Conductivity in Half-Metallic Material Induced by d-Wave-Like Spin-Orbit Gap
- 저자
- Choi, Joonyoung; Park, Jin-Hong; Kyung, Wonshik; Kim, Younsik; Kim, Mi Kyung; Kwon, Junyoung; Kim, Changyoung; Rhim, Jun-Won; Park, Se Young; Jo, Younjung
- 발행일
- 2024-05
- 유형
- Article
- 저널명
- Advanced Science
- 권
- 11
- 호
- 20