Self-Consistent Symmetrized Relativistic Augmented Plane Wave Method: Application to α-U
- 15 July 1990
- journal article
- Published by Physical Society of Japan in Journal of the Physics Society Japan
- Vol. 59 (7), 2426-2442
- https://doi.org/10.1143/jpsj.59.2426
Abstract
By applying to Loucks' theory the technique of the bispinor-type projection operator constructed with the double multiplier representations for non-symmorphic space groups, we obtain a symmetrized relativistic APW method for a calculation of the electronic structures in actinides. A self-contained description is given of a self-consistent band structure theory which is based on this method and the local-density approximation to the exchange-correlation potential. The method is applied to an investigation of the energy band structure, the density of states and the Fermi surface in α-U. The Fermi surface consists of various hole and electron sheets in four bands with strong 5f character. With small modifications, these Fermi surface sheets are shown to explain reasonably well the angular dependence of the de Haas-van Alphen effect observed in α-U.Keywords
This publication has 26 references indexed in Scilit:
- Fermi surface and effective masses for the heavy-electron superconductors UPt3Solid State Communications, 1988
- Heavy-fermion quasiparticles inPhysical Review Letters, 1988
- Fermi surface ofwithin the local-density approximationPhysical Review B, 1987
- Self-consistent relativistic band calculations and the optical conductivities of Ba and EuJournal of Physics F: Metal Physics, 1986
- Local density band approach to f-electron systems — heavy fermion superconductor UPt3Journal of Magnetism and Magnetic Materials, 1985
- Symmetrized Relativistic Augmented-Plane-Wave Method: Gray Tin and the Warped Muffin-Tin PotentialPhysical Review B, 1969
- Relativistic Formulation of the Green's Function Method in Periodic LatticesProgress of Theoretical Physics, 1966
- Relativistic Theory for Energy-Band CalculationJournal of the Physics Society Japan, 1966
- Crystal Structure Variations in Alpha Uranium at Low TemperaturesPhysical Review B, 1963
- Low-Temperature Phase Transition in Alpha UraniumPhysical Review B, 1961