Publication | Closed Access
The spin-orbit interaction in metals and semiconductors
74
Citations
20
References
1966
Year
EngineeringSpin SystemsSpintronic MaterialSpin DynamicElectronic StructureSpin PhenomenonSemiconductorsSpin-orbit InteractionSolid GermaniumQuantum MaterialsModel PotentialSpin-orbit EffectsSpin-charge-orbit ConversionPhysicsQuantum ChemistrySpin-orbit CouplingSolid-state PhysicQuantum MagnetismSpintronicsNatural SciencesApplied PhysicsCondensed Matter Physics
Abstract A model for including spin-orbit interaction in setting up the effective potential seen by a valence electron in non-transition metals and semiconductors including liquid metals and alloys is described. It is essentially a generalization of the model potential of Heine and Abarenkov (1964) to take account of the splitting of the observed spectroscopic energy levels due to spin-orbit coupling. Numerical calculations are made for spin-orbit effects in solid germanium and lead: a good agreement with the observed splitting of the valence band in germanium is obtained without any arbitrary parameter. The effects contribute about 5% to the resistivity of liquid lead.
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