Energy band gap of the alloy Zn1−xMgxSeyTe1−y lattice matched to ZnTe, InAs and InP
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference15 articles.
1. Improvement in lasing characteristics of II–VI blue-green lasers using quaternary and ternary alloys to produce pseudomorphic heterostructures
2. Independent and correlated composition behavior of material properties: Application to energy band gaps for theGaαIn1−αPβAs1−βandGaαIn1−αPβSbγAs1−β−γalloys
3. Multicomponent semiconductor material discovery guided by a generalized correlated function expansion
4. Bandgap and lattice constant of GaInAsP as a function of alloy composition
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1. Lattice dynamic and mechanical properties of GaxIn1-xPySbzAs1-y-z alloy lattice-matched to GaSb substrate;Materials Chemistry and Physics;2023-02
2. First principles investigations of structural and optoelectronic properties of cubic MgxZn1−xSeyTe1−y quaternary semiconductor alloys using FP-LAPW approach;Applied Physics A;2019-08-24
3. Density functional calculations of structural, elastic and optoelectronic features of Mg Zn1−S, Mg Zn1−Se and Mg Zn1−Te alloys;Materials Chemistry and Physics;2019-05
4. Theoretical diagnostic and prediction of physical properties of quaternary InGaAsP compound using artificial neural networks optimized by the Levenberg Maquardt algorithm;Optical and Quantum Electronics;2018-07
5. Influence of source transport rate upon fractions of Mg and Se in Zn1-x Mgx Sey Te1-y layers grown by metalorganic vapor phase epitaxy;physica status solidi (c);2016-03-16
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