Технические дисциплины и материаловедение
Semiconductor quantum wells
100%
Topological insulators
58%
Electrons
42%
Heterojunctions
30%
Stimulated emission
23%
Valence bands
21%
Oxygen vacancies
20%
Two dimensional electron gas
19%
Electronic structure
18%
Energy gap
18%
Magnetoresistance
16%
Band structure
15%
Magnetic fields
15%
Phonons
15%
Wavelength
14%
Temperature
14%
Fermions
14%
Surface states
14%
Molecular beam epitaxy
13%
Oxygen
13%
Cyclotron resonance
12%
Conduction bands
12%
Galvanomagnetic effects
11%
Photoconductivity
11%
Fermi level
11%
Substrates
11%
Nanopillars
11%
Charge transfer
10%
Silicon
10%
Carrier concentration
10%
Optical transitions
10%
Optical properties
10%
Tantalum oxides
8%
Ellipsometry
8%
Ferroelectric materials
8%
X rays
8%
Photons
7%
Masks
7%
Crystals
7%
Radiation
7%
Transport properties
7%
Scattering
7%
Photocurrents
6%
Metalloids
6%
Atoms
6%
Epitaxial films
6%
Photoelectron spectroscopy
6%
Plasmas
6%
Atomic layer deposition
6%
Vacancies
6%
Electron-electron interactions
6%
DNA
6%
Thin films
6%
Infrared radiation
6%
Electron Transport
6%
Relaxation
5%
Ballistics
5%
Silicon oxides
5%
Experiments
5%
Thermionic emission
5%
Point contacts
5%
Anisotropy
5%
Spectroscopy
5%
Raman scattering
5%
Plasma enhanced chemical vapor deposition
5%
Quartz crystal microbalances
5%
Физика и астрономия
quantum wells
74%
insulators
37%
electrons
29%
electron gas
23%
magnetic fields
16%
oscillations
15%
stimulated emission
13%
cyclotron resonance
11%
metalloids
11%
oxygen
11%
photoconductivity
11%
energy spectra
10%
conduction bands
10%
molecular beam epitaxy
10%
valence
9%
wavelengths
9%
temperature
9%
excitons
9%
conductivity
8%
ballistics
8%
aluminum gallium arsenides
8%
phonons
8%
electric potential
7%
simulation
7%
electronic structure
7%
atomic structure
7%
polarization
7%
fermions
6%
smoothing
6%
optical transition
6%
traps
6%
electron scattering
6%
radiation
6%
microwaves
6%
resonators
6%
photoelectric emission
5%
optical properties
5%
valleys
5%
spectroscopy
5%
photons
5%
temperature dependence
5%
energy
5%
capacitance
5%
drag
5%
electrostatics
5%
scattering
5%
silicon
5%
Химические соединения
Nonconductor
36%
Landau Level
22%
Electron Particle
21%
Two-Dimensional Electron Gas
15%
Valence Band
14%
Magnetoresistance
13%
Electronic Band Structure
12%
Surface State
12%
Band Gap
11%
Energy
11%
Stimulated Emission
11%
Electron Spin
10%
Nonstoichiometric Compound
10%
Fermion
10%
Surface
10%
Cyclotron Resonance
10%
Molecular Beam Epitaxy
10%
Resistance
9%
Dioxygen
9%
Nanopillar
9%
Electronic State
9%
Subband
8%
Photoconductivity
8%
Conduction Band
7%
Conductivity
7%
Resonance
7%
Simulation
7%
Compound Mobility
6%
Optical Transition
6%
Conductance
6%
Voltage
6%
Fermi Level
6%
Effective Mass
6%
Phonon
5%
Monte Carlo Method
5%
Thermoelectricity
5%
Optical Property
5%
Thermionic Emission
5%
Charge Transfer
5%
Wavelength
5%