Red–green–blue light emitting diodes and distributed Bragg reflectors based on ZnCdMgSe lattice-matched to InP
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference14 articles.
1. Molecular beam epitaxial growth of high quality Zn1−xCdxSe on InP substrates
2. Molecular beam epitaxial growth of MgZnCdSe on (100) InP substrates
3. ZnCdSe/ZnCdMgSe quantum wells on InP substrates for visible emitters
4. Defect reduction of Zn[sub x]Cd[sub y]Mg[sub 1−x−y]Se based structures grown on InP by using Zn irradiation of the III–V surface
5. A prism coupler technique for characterizing thin film II–VI semiconductor systems
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1. Distributed Bragg reflector made of CdSe and ZnTe;Superlattices and Microstructures;2020-03
2. Distributed Bragg reflectors obtained by combining Se and Te compounds: Influence on the luminescence from CdTe quantum dots;Journal of Applied Physics;2016-05-14
3. Growth of II–VI and III-nitride quantum-dot microcavity systems;Quantum Optics with Semiconductor Nanostructures;2012
4. High-reflectivity broadband distributed Bragg reflector lattice matched to ZnTe;Applied Physics Letters;2009-05-11
5. Cross-sectional scanning tunneling microscopy study on II–VI multilayer structures;Applied Physics Letters;2007-10-15
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