Hydrostatic-pressure studies of confined transitions in cubicZn1−xCdxSe/ZnSe strained-layer quantum wells
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.45.9505/fulltext
Reference20 articles.
1. Molecular beam epitaxy of Zn1−xCdxSe epilayers and ZnSe/Zn1−xCdxSe superlattices
2. Room‐temperature exciton absorption in (Zn,Cd)Se/ZnSe quantum wells at blue‐green wavelengths
3. Low threshold pulsed and continuous‐wave laser action in optically pumped (Zn,Cd)Se/ZnSe multiple quantum well lasers in the blue‐green
4. Nucleation and characterization of pseudomorphic ZnSe grown on molecular beam epitaxially grown GaAs epilayers
5. The effect of lattice deformation on optical properties and lattice parameters of ZnSe grown on (100)GaAs
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1. Hydrostatic pressure and temperature effects on the electronic energy levels of a spherical quantum dot placed at the center of a nano-wire;Superlattices and Microstructures;2012-10
2. Pressure-induced increase of exciton–LO-phonon coupling in a ZnCdSe/ZnSe quantum well;physica status solidi (b);2003-07
3. Pressure tuning of strains in Zn1−xCdxSe/ZnSe single quantum wells;Physics Letters A;2002-12
4. Pressure dependence of photoluminescence of ZnTe/Zn1?xCdxTe strained-layer superlattice;Journal of Raman Spectroscopy;2001
5. Pressure dependence of optical transitions inIn0.15Ga0.85N/GaNmultiple quantum wells;Physical Review B;1998-10-15
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