Engineering & Materials Science
Superconducting materials
100%
Electrons
79%
Superconductivity
63%
Carrier concentration
52%
Magnetic fields
48%
Doping (additives)
45%
Temperature
39%
Phonons
37%
Magnetoresistance
37%
Infrared radiation
32%
Thin films
30%
Enhanced magnetoresistance
28%
Tunnel junctions
28%
Galvanomagnetic effects
27%
Oxides
27%
Fermi surface
27%
Photoexcitation
25%
Heterojunctions
23%
Surface states
21%
Spectroscopy
18%
Shubnikov-de Haas effect
17%
Film thickness
17%
Blue shift
16%
Ferroelectricity
15%
Topological insulators
15%
Ferroelectric materials
14%
Monolayers
14%
Magnetism
14%
Optical conductivity
14%
Metals
13%
Energy gap
12%
Mott insulators
12%
Spin orbit coupling
11%
Photoelectron spectroscopy
11%
Superlattices
10%
Screening
10%
Quantum confinement
10%
Sheet resistance
10%
Liquids
10%
Crystalline materials
10%
Electric potential
10%
Bosons
10%
Point contacts
9%
Nanolithography
9%
Crystals
9%
Electronic states
8%
Specific heat
8%
Magnetization
8%
Superconducting transition temperature
8%
Ground state
8%
Chemistry
Superconductor
87%
Magnetic Field
62%
Superconductivity
55%
Superconducting Gap
50%
Magnetoresistance
49%
Conductance
35%
Nonconductor
34%
Tunneling
29%
Order Parameter
29%
Electron Liquid
27%
Liquid Film
24%
Nernst-Ettingshausen Effect
24%
Hall Effect Coefficient
23%
Optical Conductivity
20%
Critical Temperature
19%
Surface State
17%
Reflectivity
17%
Energy
16%
Shubnikov-De Haas Effect
15%
Superconducting Critical Temperature
14%
Two-Dimensional Electron Gas
14%
Magnetism
14%
Sheet Resistance
13%
Superconducting Critical Field
13%
Electron Spin
12%
Conductivity
12%
Superconductive Transition Temperature
12%
Andreev Reflection
11%
Voltage
11%
Magnetic Scattering
11%
Disorder
10%
Charge Density
10%
Electron Particle
10%
Transport Property
10%
Phase Diagrams
10%
Ferroelectric Switching
10%
Seebeck Effect
9%
Electronic State
9%
Negative Magnetoresistance
9%
Bound State
9%
Band Gap
8%
Metal
8%
Hall Effect
8%
Quantum Interference
7%
Nanolithography
7%
Spectroscopy
7%
Magnetic Ordering
7%
Strength
7%
Weight
6%
Spin-Orbit Coupling
6%
Physics & Astronomy
cuprates
59%
electrons
41%
magnetic fields
40%
superconductivity
40%
insulators
30%
domes
21%
temperature dependence
20%
phonons
19%
excitation
19%
temperature
18%
conductivity
18%
broken symmetry
17%
thin films
16%
electric potential
15%
spectroscopy
15%
Fermi surfaces
14%
critical temperature
14%
electrical resistivity
13%
Hall effect
13%
oscillations
12%
oxides
12%
energy
12%
condensates
12%
transition temperature
12%
phase diagrams
11%
critical point
11%
transport properties
11%
metals
10%
symmetry
10%
disorders
9%
conduction
9%
orbits
9%
probes
9%
tunnel junctions
9%
infrared signatures
9%
superlattices
7%
scattering
7%
ground state
7%
electronics
7%
pulses
6%
film thickness
6%
specific heat
6%
ferroelectricity
6%
cerium
6%
quantum wires
6%
spin-orbit interactions
6%
blue shift
5%
spacers
5%
liquids
5%
photoelectric emission
5%