Impact of electron confinement on the lasing properties of ZnS/ZnSe superlattices
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.118751
Reference10 articles.
1. Absorption spectra of ZnSe‐ZnS strained‐layer superlattices grown on (001) GaAs by molecular beam epitaxy
2. Optical studies of ZnSe-ZnSGaAs(100) single quantum wells grown by photo-assisted vapor phase epitaxy
3. Two-photon spectroscopy in ZnSe/ZnS quantum wells
4. Theoretical model of a purported empirical violation of the predictions of quantum theory
5. Effects of strain and temperature on excitonic emissions in ZnSeZnS strained-layer superlattices grown by low-pressure MOCVD
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1. Modelling of strained ZnSSe on relaxed ZnSSe-based structures for blue light emission;Physica E: Low-dimensional Systems and Nanostructures;2009-02
2. Strain effects in the common-cation II VI heterostructures: case of ZnS/ZnSe superlattices;Journal of Physics D: Applied Physics;2003-04-03
3. Exciton energy broadening due to interface fluctuations in ZnSe/ZnSxSe1−x strained quantum wells;Applied Surface Science;2002-05
4. Lattice Strain and Band Offset Determination in ZnSe/ZnS Short-Period Superlattices Grown by MOVPE on (100)GaAs;Materials Science Forum;1998-12
5. Orientation dependence of strained ZnSe/ZnS(h11) single quantum well luminescence;Journal of Applied Physics;1998-04-15
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