Engineering & Materials Science
Electrons
100%
Helium
64%
Kondo effect
55%
Graphene
52%
Carrier concentration
46%
Atoms
45%
Liquids
41%
Tunnel junctions
41%
Temperature
41%
Electron scattering
40%
Phonons
34%
Charge carriers
33%
Carrier mobility
32%
Thin films
31%
Heterojunctions
28%
Physics
28%
Transport properties
27%
Substrates
27%
Thick films
27%
Cobalt
25%
Scattering
24%
Debye temperature
21%
Impurities
21%
Melting
20%
Electric fields
20%
Dangling bonds
20%
Phonon scattering
20%
Elastic scattering
19%
Transition metal oxides
18%
Metals
18%
Bias voltage
18%
Silicon
17%
Electrodes
16%
Dimers
16%
Strip metal
16%
Qubits
15%
Electronic density of states
14%
Oxide films
13%
Fermi level
12%
Superconducting transition temperature
12%
Crystalline materials
11%
Transmission electron microscopy
11%
Polarons
10%
Integrated circuits
10%
Volume fraction
9%
Surface waves
9%
Plasma confinement
9%
Electron temperature
9%
Aluminum
8%
Electric potential
6%
Physics & Astronomy
Kondo effect
63%
liquid helium
59%
decoupling
45%
indium oxides
43%
electrons
40%
conduction
40%
oxide films
39%
graphene
36%
electrical resistivity
34%
tunnel junctions
30%
interference
30%
disilicides
29%
nanowires
29%
low frequencies
26%
metals
24%
orbitals
23%
physics
23%
metal films
22%
Josephson junctions
22%
conduction electrons
22%
carrier mobility
22%
phonons
22%
surface plasmon resonance
21%
tin oxides
21%
thick films
20%
tin
20%
cobalt
20%
oxygen
20%
temperature
20%
rutile
20%
micrometers
20%
noise measurement
19%
charge carriers
19%
modulation
18%
plasmons
18%
electric potential
17%
capacitance
17%
transport properties
17%
melting
17%
quantum dots
17%
thin films
17%
trapping
17%
scattering
16%
defects
16%
dipoles
16%
metal strips
15%
refractivity
15%
permittivity
15%
atoms
14%
conductivity
14%
Chemical Compounds
Kondo Effect
79%
Conductance
49%
Liquid Film
42%
Density of State
39%
Tunneling
37%
Orbital
36%
Electron Particle
35%
Superconductive Transition Temperature
32%
Graphene
31%
Conduction Electron
30%
Liquid
29%
Dangling Bond
29%
Resistance
25%
Metal
23%
Charge Carrier
21%
Transport Property
20%
Electron Density
20%
Electric Field
19%
Melting
19%
Surface Wave
17%
Electron Temperature
17%
Compound Mobility
16%
Conductivity
14%
Voltage
14%
Transmission Electron Microscopy
14%
Electron-Phonon Scattering
13%
Tunneling Conductance
13%
Electron Correlation
13%
Superconductivity
12%
Monte Carlo Method
11%
Electron Scattering
11%
Force
11%
Behavior as Electrode
11%
Debye Temperature
10%
Rutile
10%
Dioxygen
10%
Strength
10%
Electron Crystal
9%
Nanowire
9%
Fermi Level
8%
Time
7%
Effective Mass
7%
Surface
7%
Nanomaterial
6%
Magnetic Field
6%
Polaron
6%
Volume
6%
Oxide
5%