Engineering & Materials Science
Galvanomagnetic effects
100%
Electronic structure
70%
Thin films
44%
Microstructure
31%
Metal insulator transition
29%
Absorption spectroscopy
23%
Doping (additives)
17%
Transmission electron microscopy
16%
Annealing
15%
Ions
14%
X rays
14%
Oxygen
12%
Pulsed laser deposition
12%
Epitaxial films
11%
Perovskite
10%
Chemical analysis
10%
Argon
8%
Superconducting transition temperature
8%
Electrons
7%
Substrates
5%
Temperature
3%
Physics & Astronomy
electronic structure
35%
microstructure
27%
thin films
24%
x ray absorption
14%
x ray spectroscopy
13%
absorption spectroscopy
12%
transition metals
11%
insulators
9%
disrupting
9%
transmission electron microscopy
8%
oxygen
8%
annealing
8%
pulsed laser deposition
6%
ions
6%
inhomogeneity
5%
perovskites
5%
signatures
5%
transition temperature
5%
argon
5%
valence
4%
atmospheres
4%
augmentation
4%
electrons
2%
Chemical Compounds
Electronic State
34%
Microstructure
31%
Liquid Film
22%
Metal Insulator Transition
19%
Absorption Spectroscopy
12%
Pulsed Laser Deposition
8%
Transmission Electron Microscopy
8%
Mixed Valence
7%
Ion
5%
Annealing
5%
Electron Particle
3%
Dioxygen
3%