Технические дисциплины и материаловедение
Semiconductor quantum wells
100%
Magnetic fields
56%
Magnetoresistance
45%
Electrons
40%
Heterojunctions
37%
Semiconductor materials
24%
Carrier concentration
21%
Two dimensional electron gas
20%
Electron-electron interactions
19%
Conduction bands
16%
Temperature
13%
Galvanomagnetic effects
13%
Anisotropy
12%
Relaxation
12%
Valence bands
11%
Hall effect
10%
Orbits
10%
Temperature distribution
9%
Wave functions
9%
Relaxation time
9%
Scattering
9%
Fermi liquids
8%
Electron gas
8%
Exchange interactions
7%
Spin orbit coupling
7%
Topological insulators
7%
Phonons
7%
Tensors
6%
Fermi level
6%
Shubnikov-de Haas effect
6%
Quantum confinement
6%
Ballistics
6%
Metalloids
6%
Statistics
6%
Band structure
5%
Oxides
5%
Spectroscopy
5%
Химические соединения
Magnetic Field
45%
Negative Magnetoresistance
30%
Conductivity
29%
Semiconductor
18%
Two-Dimensional Electron Gas
16%
Electron Particle
15%
Energy
14%
Tunneling
13%
Spin-Orbit Splitting
13%
Anisotropy
13%
Hole Gas
12%
Electron Density
10%
Magnetoresistance
9%
Quantum Interference
9%
Anderson Localization
8%
Electron Gas
8%
Conduction Band
7%
Wave Function
7%
Hopping Conductivity
7%
Hall Effect
6%
Effective Mass
6%
Diffusion
6%
Simulation
6%
Landau Level
6%
Shubnikov-De Haas Effect
5%
Time
5%
Valence Band
5%
Физика и астрономия
quantum wells
57%
conductivity
40%
magnetic fields
25%
energy spectra
22%
electron gas
14%
electrons
14%
oscillations
14%
interference
12%
orbits
10%
anisotropy
8%
electron scattering
8%
conduction bands
7%
temperature distribution
7%
anomalies
6%
Hall effect
5%
interactions
5%
insulators
5%
temperature dependence
5%
valence
5%