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Band structure and optical properties of sinusoidal superlattices
G. Yang,
S. Lee
, J. Furdyna
Research output
:
Contribution to journal
›
Article
›
peer-review
12
Citations (Scopus)
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Engineering & Materials Science
Superlattices
100%
Band structure
74%
Optical properties
66%
Electrons
43%
Optical transitions
22%
Valence bands
19%
Conduction bands
18%
Photoluminescence
17%
Wave functions
14%
Fabrication
7%
Chemical analysis
6%
Chemical Compounds
Superlattice
54%
Electronic Band Structure
53%
Optical Property
38%
Nearly Free Electron Approximation
32%
Subband
28%
Selection Rule
17%
Brillouin Zone
10%
Optical Transition
9%
Wave Function
7%
Valence Band
7%
Conduction Band
7%
Photoluminescence
5%
Electron Particle
3%
Physics & Astronomy
superlattices
50%
optical properties
34%
free electrons
31%
Brillouin zones
11%
approximation
11%
optical transition
11%
wave functions
8%
alignment
8%
valence
7%
photoluminescence
7%
perturbation
7%
conduction
7%
fabrication
6%
profiles
5%
electrons
4%