Engineering & Materials Science
Superlattices
100%
Optical properties
66%
Structural properties
57%
Thermodynamic properties
49%
Thermal conductivity
48%
Heat treatment
46%
Phonons
27%
Photoluminescence spectroscopy
18%
Annealing
17%
Scattering
16%
Temperature
14%
Alloying
10%
Spectroscopy
9%
Thermodynamic stability
9%
Transmission electron microscopy
9%
X ray diffraction
8%
Thin films
8%
Ions
8%
Substrates
6%
Defects
6%
Chemical analysis
5%
Physics & Astronomy
superlattices
50%
thermodynamic properties
43%
thermal conductivity
41%
optical properties
34%
mean free path
17%
phonons
12%
annealing
10%
scattering
9%
mass spectroscopy
8%
temperature
7%
alloying
7%
thermal stability
7%
photoluminescence
6%
transmission electron microscopy
5%
defects
4%
profiles
4%
diffraction
4%
spectroscopy
4%
thin films
4%
ions
4%
x rays
4%
Chemical Compounds
Superlattice
54%
Thermal Conductivity
50%
Optical Property
38%
Phonon
20%
Annealing
14%
Alloy
12%
Photoluminescence Spectroscopy
9%
Secondary Ion Mass Spectroscopy
9%
Alloying
9%
Thermal Stability
5%
Transmission Electron Microscopy
5%
X-Ray Diffraction
4%
Liquid Film
4%