Engineering & Materials Science
Electrons
100%
Graphene
61%
Magnetic fields
56%
Wave functions
34%
Semiconductor quantum dots
34%
Fermions
30%
Spin orbit coupling
26%
Ground state
26%
Electron energy levels
25%
Graphene nanoribbon
24%
Coulomb interactions
23%
Fermi level
22%
Semiconductor materials
22%
Electronic properties
18%
Carrier concentration
16%
Kondo effect
16%
Optical conductivity
15%
Semiconductor quantum wires
15%
Diluted magnetic semiconductors
14%
Electron-electron interactions
14%
Electron gas
13%
Optical transitions
13%
Impurities
12%
Nanoribbons
12%
Cyclotron resonance
11%
Solitons
11%
Excitons
11%
Hartree approximation
11%
Semiconductor quantum wells
10%
Valence bands
9%
Chirality
8%
Orbits
8%
Angular momentum
8%
Fermi liquids
8%
Linewidth
8%
Optical properties
8%
Temperature
8%
Mott insulators
7%
Spintronics
7%
Magnetic properties
7%
Infrared radiation
7%
Spin polarization
6%
Topological insulators
6%
Polarization
6%
Hubbard model
6%
Polyacetylenes
6%
Photoluminescence
6%
Inelastic scattering
6%
Tensile strain
6%
Electron scattering
6%
Chemical Compounds
Magnetic Field
61%
Quantum Dot
53%
Electron Particle
48%
Landau Level
46%
Graphene
42%
Semiconductor
29%
Energy
24%
Fermion
21%
Tunneling
21%
Nanoribbon
20%
Strength
17%
Disorder
17%
Wave Function
16%
Spin-Orbit Coupling
16%
Density of State
13%
Cyclotron Resonance
13%
Electron Spin
12%
Soliton
12%
Collective Excitation
12%
Kondo Effect
12%
Length
12%
Optical Conductivity
11%
One-Dimensional Electron Gas
11%
Repulsive Potential
10%
Ground State
10%
Electronic Property
9%
Subband
9%
Hamiltonian
8%
Hole (Electron)
8%
Anyon
7%
Electron Gas
7%
Fermi Level
7%
Magnetoplasmon
7%
Valence Band
7%
Conductivity
7%
Chirality
7%
Roton
7%
Luttinger Liquid
6%
Potential Barrier
6%
Coulomb Potential
6%
Electron-Phonon Scattering
6%
Spintronics
6%
Magnetic Polaron
6%
Fermi Liquid
6%
Polarization
6%
Nonconductor
6%
Chemical Transformation
5%
Emission Spectrum
5%
Anderson Localization
5%
Angular Momentum
5%
Physics & Astronomy
quantum dots
62%
graphene
58%
electrons
45%
magnetic fields
43%
disorders
20%
integers
20%
ribbons
20%
energy
17%
interactions
17%
quantum wells
16%
n-type semiconductors
16%
polarization (charge separation)
15%
Kondo effect
15%
conductivity
14%
excitons
14%
quantum Hall effect
13%
impurities
13%
quantum wires
13%
phase coherence
12%
cyclotron resonance
12%
excitation
11%
matrices
11%
ground state
11%
electron gas
10%
symmetry
10%
wave functions
10%
electron states
9%
electron scattering
9%
fermions
9%
orbits
9%
rings
9%
interlayers
9%
spin-orbit interactions
8%
electronics
8%
occupation
8%
scaling
8%
exponents
7%
Hartree approximation
7%
rotons
6%
Bose-Einstein condensates
6%
liquids
6%
decay rates
6%
crossovers
6%
modulation
6%
valence
6%
emission spectra
5%
polarization
5%
energy spectra
5%
energy levels
5%
optical transition
5%