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Semiconductor Kadanoff-Baym Equation Results for Optically Excited Electron-Hole Plasmas in Quantum Wells
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1998
Year
SemiconductorsQuantum ScienceElectrical EngineeringQuasistatic Born ApproximationEngineeringQuantum ComputingPhysicsCategoryquantum ElectronicsQuantum DeviceApplied PhysicsCondensed Matter PhysicsQuantum WellsLong TimesPlasma PhysicsPlasma PhotonicsSemiconductor Kadanoff-baym EquationsOptoelectronicsSemiconductor Device
We present results from solutions of the semiconductor Kadanoff-Baym equations (full two-time semiconductor Bloch equations) with self-energies in quasistatic Born approximation, for GaAs single quantum wells. We concentrate on memory and correlation effects under fs-pulse excitation conditions. A remarkable feature is the observed kinetic energy increase which is due to the build-up of correlations among the generated carriers. We demonstrate that the two-time approach is (i) very well suited to study correlation phenomena both on short and long times, thereby avoiding well-known problems of one-time kinetic equations, and (ii) that it is becoming practical with the use of efficient integration techniques.