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Coherent optical nonlinearities and phase relaxation of quasi-three-dimensional and quasi-two-dimensional excitons in ZnSxSe1 - x/ZnSe structures

Authors :
Wagner, Hans Peter
Schätz, A.
Maier, R.
Langbein, Wolfgang Werner
Hvam, Jørn Märcher
Wagner, Hans Peter
Schätz, A.
Maier, R.
Langbein, Wolfgang Werner
Hvam, Jørn Märcher
Source :
Wagner , H P , Schätz , A , Maier , R , Langbein , W W & Hvam , J M 1997 , ' Coherent optical nonlinearities and phase relaxation of quasi-three-dimensional and quasi-two-dimensional excitons in ZnSxSe1 - x/ZnSe structures ' , Physical Review B , vol. 56 , no. 19 , pp. 12581-12588 .
Publication Year :
1997

Abstract

We investigate the dephasing of heavy-hole excitons in different free-standing ZnSxSe1-x/ZnSe layer structures by spectrally resolved transient four-wave mixing. ZnSe layers of 80, 8, and 4 nm thickness with ternary barriers are studied, representing the crossover from quasi-three-dimensional to quasi-two-dimensional excitons. A common feature of the four-wave-mixing signals is the appearance of two components, a prompt signature and a delayed photon echo, which are identified by their different polarization dependencies and decay times. For crosslinear polarized fields, the rapidly decaying signal is attributed to the response of spin-coupled exciton states, with a decay time given by the inhomogeneous broadening. The photon echo is due to a distribution of localized, noninteracting excitons. We determine the exciton-exciton and exciton-phonon scattering cross sections for different dimensionalities by the intensity and temperature dependencies of the exciton dephasing.

Details

Database :
OAIster
Journal :
Wagner , H P , Schätz , A , Maier , R , Langbein , W W & Hvam , J M 1997 , ' Coherent optical nonlinearities and phase relaxation of quasi-three-dimensional and quasi-two-dimensional excitons in ZnSxSe1 - x/ZnSe structures ' , Physical Review B , vol. 56 , no. 19 , pp. 12581-12588 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn826398087
Document Type :
Electronic Resource