DocumentCode :
2939862
Title :
Spatio-temporal dynamics of optically excited excitonic wavepackets in semiconductor quantum wells
Author :
Kuckenburg, S. ; Knorr, Andreas ; Koch, S.W.
Author_Institution :
Dept. of Phys. & Mater. Sci., Philipps-Univ., Marburg, Germany
fYear :
2000
fDate :
10-15 Sept. 2000
Abstract :
Summary form only given. Optical excitation of a semiconductor quantum well leads to a built up of coherent polarization as well as charge carrier densities in the valence and conduction band. Ultrashort and spatially localized optical pulses make it possible to study the preparation, propagation and scattering of carrier wavepackets. Recent work has investigated the electronic transport phenomena for above bandedge excitation under the influence of phonons and interface roughness and describes microscopically the temporally resolved cross-over from the ballistic to the diffusive transport regime. In contrast, for excitation of bound electron-hole pairs, i.e. excitons with a larger oscillator strength, the coupling to the radiation field cannot be neglected and the coupling through the crystal lattice via acoustical phonons plays an important role in the formation and decay process of wavepackets. We present results for the spatio-temporal dynamics of quantum well excitons interacting with photons and phonons in a disordered landscape. The theory is based on a microscopic description for phonons, photons and disorder in a spatially inhomogeneous system.
Keywords :
optical chaos; optical pumping; phonon-exciton interactions; semiconductor quantum wells; time resolved spectra; Heisenberg equation of motion; bound electron-hole pairs; coherent polarization; disorder correlation functions; exciton-phonon interaction; exciton-photon interaction; optically excited excitonic wavepackets; phonon bath; quantum well excitons; radiation field coupling; radiative decay; semiconductor quantum wells; spatially inhomogeneous system; spatio-temporal dynamics; Acoustic scattering; Charge carrier density; Excitons; Lead compounds; Optical polarization; Optical propagation; Optical pulses; Optical scattering; Particle scattering; Phonons;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Quantum Electronics Conference, 2000. Conference Digest. 2000 International
Conference_Location :
Nice, France
Print_ISBN :
0-7803-6318-3
Type :
conf
DOI :
10.1109/IQEC.2000.908039
Filename :
908039
Link To Document :
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