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Fermi surfaces, spin-mixing parameter, and colossal anisotropy of spin relaxation in transition metals from ab initio theory
- Source :
- Physical review / B 93(14), 144403 (2016). doi:10.1103/PhysRevB.93.144403
- Publication Year :
- 2016
- Publisher :
- APS, 2016.
-
Abstract
- The Fermi-surfaces and Elliott-Yafet spin-mixing parameter (EYP) of several elemental metals are studied by \emph{ab initio} calculations. We focus first on the anisotropy of the EYP as a function of the direction of the spin-quantization axis [Phys.~Rev.~Lett.\ \textbf{109}, 236603 (2012)]. We analyze in detail the origin of the gigantic anisotropy in $5d$ hcp metals as compared to $5d$ cubic metals by band-structure calculations and discuss the stability of our results against an applied magnetic field. We further present calculations of light (4$d$ and 3$d$) hcp crystals, where we find a huge increase of the EYP anisotropy, reaching colossal values as large as $6000\%$ in hcp Ti. We attribute these findings to the reduced strength of spin-orbit coupling, which promotes the anisotropic spin-flip hot loops at the Fermi surface. In order to conduct these investigations, we developed an adapted tetrahedron-based method for the precise calculation of Fermi surfaces of complicated shape and accurate Fermi-surface integrals within the full-potential relativistic Korringa-Kohn-Rostoker Green-function method.
- Subjects :
- Physics
Condensed Matter - Materials Science
Condensed matter physics
Materials Science (cond-mat.mtrl-sci)
FOS: Physical sciences
Fermi surface
02 engineering and technology
021001 nanoscience & nanotechnology
01 natural sciences
Magnetic field
Condensed Matter::Materials Science
Transition metal
Ab initio quantum chemistry methods
0103 physical sciences
Condensed Matter::Strongly Correlated Electrons
ddc:530
010306 general physics
0210 nano-technology
Spin (physics)
Anisotropy
Electronic band structure
Fermi Gamma-ray Space Telescope
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Physical review / B 93(14), 144403 (2016). doi:10.1103/PhysRevB.93.144403
- Accession number :
- edsair.doi.dedup.....1778532d24995a9042a25dfbcf559a56