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- W2936169632 abstract "Scattering rates of quantum-well excitons by acoustic phonons are calculated using realistic deformation potentials for electrons and holes in structures based on GaAs. These rates are used in order to reproduce the exciton dynamics in a time-resolved photoluminescence experiment. Rise time and decay time of the luminescence signal are studied as a function of temperature and quantum-well size. It is found that the exciton distribution function reaches a stationary shape during the radiative recombination and shows strong deviations from the thermal distribution. As a consequence, the decay time is slower. A discussion of the dependence of these effects on the well width is given. textcopyright{} 1996 The American Physical Society." @default.
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- W2936169632 date "1996-06-15" @default.
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- W2936169632 title "Nonequilibrium dynamics of free quantum-well excitons in time-resolved photoluminescence" @default.
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- W2936169632 doi "https://doi.org/10.1103/physrevb.53.15834" @default.
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