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Bandgap characters in GaAs-based ternary alloys
N. Tit
,
N. Amrane
, A. H. Reshak
Department of Physics
Research output
:
Contribution to journal
›
Article
›
peer-review
10
Citations (Scopus)
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Engineering & Materials Science
Ternary alloys
100%
Negative ions
89%
Energy gap
75%
Bending (forming)
73%
Positive ions
32%
Spin orbit coupling
27%
Electronegativity
23%
Photoluminescence
21%
Computational methods
13%
Atoms
13%
Crystals
13%
Chemical analysis
8%
Chemical Compounds
Band Gap
49%
Alloy
46%
Anion
29%
Tight-Binding Method
24%
Plane Wave
21%
Spin-Orbit Coupling
20%
Density of State
17%
Electronegativity
17%
Energy
15%
Photoluminescence
12%
Physics & Astronomy
ternary alloys
74%
anions
62%
cations
22%
plane waves
10%
inclusions
10%
trapping
10%
orbits
9%
photoluminescence
9%
energy
7%
approximation
6%
atoms
6%
crystals
6%