articleTop 1% cited
Motion of Electrons and Holes in Perturbed Periodic Fields
Physical Review · 1955 · Vol. 97(4) · pp. 869–883
Abstract
A new method of developing an "effective-mass" equation for electrons moving in a perturbed periodic structure is discussed. This method is particularly adapted to such problems as arise in connection with impurity states and cyclotron resonance in semiconductors such as Si and Ge. The resulting theory generalizes the usual effective-mass treatment to the case where a band minimum is not at the center of the Brillouin zone, and also to the case where the band is degenerate. The latter is particularly striking, the usual Wannier equation being replaced by a set of coupled differential equations.
Photonic Crystals and ApplicationsThermal Radiation and Cooling TechnologiesThermodynamic and Structural Properties of Metals and AlloysBrillouin zonePhysicsElectronEffective mass (spring–mass system)Degenerate energy levelsCyclotron resonanceDifferential equationSemiconductorWannier functionCenter of mass (relativistic)
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References
Zur Theorie des Diamagnetismus von Leitungselektronen
The European Physical Journal A · 1933 · 1,353 citations
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