Physical Review · 1955 · 34 citations · 11 references
EngineeringMicrowave Dielectric CoefficientElectromagnetic CompatibilityAverage MassesRf SemiconductorElectron SpectroscopyInstrumentationMicrowave DeterminationElectrical EngineeringPhysicsAntennaMicrowave CeramicAtomic PhysicsMicrowave MeasurementMicroelectronicsMicrowave EngineeringElectrical PropertyMicrowave SpectroscopyDielectric CoefficientApplied PhysicsFree Current CarriersElectrical Insulation
Free current carriers in a medium make a contribution to its dielectric coefficient. The present experiment utilizes this effect to determine the effective masses of electrons and holes in germanium by measuring the microwave dielectric coefficient at several temperatures. The dielectric coefficient was determined by measuring the complex transmission coefficient at 24.15 kilomegacycles/sec through a thin slab of germanium. The effective mass for electron was $(0.09\ifmmode\pm\else\textpm\fi{}0.05){m}_{0}$; for holes it was $(0.30\ifmmode\pm\else\textpm\fi{}0.05){m}_{0}$.
11
Lattice-Scattering Mobility in Germanium
François Morin · Physical Review · 1954 · 206 citations
Semiconductors, Materials Science, Quantum Lattice System +13
Theory of the Galvanomagnetic Effects in Germanium
B. Abeles, S. Meiboom · Physical Review · 1954 · 196 citations