Europhysics Letters (EPL) · 1989 · 54 citations · 18 references
EngineeringTemperature DependenceSilicon On InsulatorBand GapSemiconductor DeviceSemiconductor NanostructuresNanoelectronicsIndirect Band GapQuantum MaterialsThermodynamicsPhonon BranchFirst-principle CalculationMaterials ScienceElectrical EngineeringPhysicsBias Temperature InstabilitySemiconductor MaterialMicroelectronicsApplied PhysicsCondensed Matter PhysicsPhononThermal Engineering
We have evaluated the contribution to the temperature dependence of the indirect band gap of silicon arising from electron-phonon interactions using a first-principle pseudo-potential technique. This represents the first parameter-free calculation of the temperature dependence of the band gap of a real material. Numerical results are in reasonable agreement with experiment. At high temperatures we find that each phonon branch gives approximately the same contribution to the temperature dependence of the gap.
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Norm-Conserving Pseudopotentials
D. R. Hamann, M. Schlüter, Chun-Yueh Chiang · Physical Review Letters · 1979 · 4.3K citations