Material Science
Film
100%
Superconducting Material
75%
Molecular Beam Epitaxy
74%
Superlattice
60%
Thin Films
57%
Cuprate
52%
Surface (Surface Science)
51%
Density
40%
Oxide Compound
37%
Heterojunction
35%
Superconductivity
27%
Single Crystal
26%
Josephson Junction
25%
Epitaxy
21%
Reflection High-Energy Electron Diffraction
20%
Titanate
17%
Anisotropy
15%
Vortex
13%
Monolayers
13%
Superconducting Film
10%
Magnetoresistance
10%
Colossal Magnetoresistance
10%
Electronic Property
10%
Electrical Resistivity
9%
Bismuth
9%
Electron Energy Loss Spectrometry
9%
Supercritical Fluid
9%
Gallium Arsenide
8%
Magnetism
8%
Diffraction Pattern
8%
Strontium
8%
Magnetic Structure
8%
Angle-Resolved Photoemission Spectroscopy
7%
High Temperature Superconductors
7%
Anisotropic Magnetoresistance
6%
Oxide Superconductors
6%
Nanowire
6%
Niobium
6%
Magnetic Property
6%
Magnesium Oxide
5%
Carrier Concentration
5%
Transmission Electron Microscopy
5%
Film Growth
5%
Current-Voltage Characteristic
5%
Ferromagnetism
5%
Keyphrases
Molecular Beam Epitaxy
73%
Superlattices
57%
Atomic Layers
50%
High-Tc
32%
Heterostructure
31%
Low Temperature
29%
Cuprate Superconductors
28%
High-Tc Superconductors
26%
Josephson Junction
26%
In Situ
25%
Trilayer
23%
Reflection High-energy Electron Diffraction
23%
LaMnO3
22%
Manganites
21%
Magnetoresistance
21%
Temperature Effect
20%
Cuprates
20%
Superconductor
19%
Superconductivity
18%
Vortex
17%
Magnetic Field
17%
SrTiO3
17%
C-axis
17%
Single Crystal
16%
Magnetization
14%
Titanate
14%
Superlattice
13%
Distributed Amplifier
13%
High Gain
13%
Electronic Structure
12%
Cooper Pairs
12%
Tunnel Junction
12%
Electron Diffraction Pattern
12%
High-temperature Superconductors
12%
Single-crystalline Films
12%
Complex Oxides
11%
High-temperature Superconductivity
11%
Atomic Monolayer
11%
SrTiO3 Substrate
11%
Colossal Magnetoresistance
11%
Epitaxial
11%
Low Field
11%
Electro-optic
10%
Frequency Shifter
10%
SrMnO3
10%
Molecular Layer
10%
Barrier Layer
10%
Light Pulse
10%
Bismuth Telluride
9%
Fermi Surface
9%