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Structural and Optical Investigations of ZnSe Based Semiconductor Microcavities

Identifieur interne : 000270 ( Main/Exploration ); précédent : 000269; suivant : 000271

Structural and Optical Investigations of ZnSe Based Semiconductor Microcavities

Auteurs : A. Pawlis [Allemagne] ; O. Husberg [Allemagne] ; A. Khartchenko [Allemagne] ; K. Lischka [Allemagne] ; D. Schikora [Allemagne]

Source :

RBID : ISTEX:C7D11B99CF8AD005348B0C35750CE61BCE831D10

English descriptors

Abstract

This paper describes structural and optical investigations of molecular beam epitaxy grown strained ZnSe/(Zn,Cd)Se quantum wells. Strain state, cadmium content, and quantum well layer thickness have a strong influence on the emission energy, which allows a luminescence tuning between 2.25 and 2.50 eV. Furthermore a ZnSe based microcavity structure completed with ZnS/YF3 distributed Bragg mirrors was processed. These reflectors are an alternative to several epitaxial grown II–VI materials and other reported approaches with respect to oxide layers. A blueshift in the photoluminescence emission energy measured by angle resolved microcavity detuning indicates an influence of the cavity mode on the quantum well mode.

Url:
DOI: 10.1002/1521-396X(200112)188:3<983::AID-PSSA983>3.0.CO;2-N


Affiliations:


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<div type="abstract" xml:lang="en">This paper describes structural and optical investigations of molecular beam epitaxy grown strained ZnSe/(Zn,Cd)Se quantum wells. Strain state, cadmium content, and quantum well layer thickness have a strong influence on the emission energy, which allows a luminescence tuning between 2.25 and 2.50 eV. Furthermore a ZnSe based microcavity structure completed with ZnS/YF3 distributed Bragg mirrors was processed. These reflectors are an alternative to several epitaxial grown II–VI materials and other reported approaches with respect to oxide layers. A blueshift in the photoluminescence emission energy measured by angle resolved microcavity detuning indicates an influence of the cavity mode on the quantum well mode.</div>
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