Quantum Theory of Cyclotron Resonance in Semiconductors: General Theory
Physical Review · 1956 · 2.2K citations · 5 references
SemiconductorsQuantum ScienceElectrical EngineeringSpintronicsEngineeringPerturbation MethodPhysicsGeneral FormNatural SciencesCategoryquantum ElectronicsApplied PhysicsCondensed Matter PhysicsQuantum TheorySemiconductor MaterialQuantum ChemistryMagnetic FieldSemiconductor DeviceElectron Physic
The most general form of the Hamiltonian of an electron or hole in a semiconductor such as Si or Ge, in the presence of an external homogeneous magnetic field, is given. Two methods of obtaining the corresponding energy levels are discussed. The first should yield very accurate values for the magnetic field in the (111) direction for either Si or Ge. The second is a perturbation method and is expected to give good results only for Ge.
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Motion of Electrons and Holes in Perturbed Periodic Fields
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Cyclotron Resonance of Electrons and Holes in Silicon and Germanium Crystals
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Quantum Theory of Cyclotron Resonance in Semiconductors
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Classical Theory of Cyclotron Resonance for Holes in Ge
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