Engineering & Materials Science
Adatoms
21%
Agglomeration
11%
Anisotropy
47%
Annealing
24%
Atomic force microscopy
27%
Atoms
71%
Crystal orientation
17%
Crystalline materials
19%
Crystallization
41%
Diffraction patterns
13%
Dimers
18%
Doping (additives)
15%
Electric properties
13%
Electronic structure
22%
Epitaxial growth
44%
Fabrication
13%
Fermi level
14%
Film growth
13%
Gate dielectrics
17%
Germanium
32%
Gold
13%
Infrared absorption
19%
Inversion layers
21%
Ion microscopes
16%
Ions
12%
Iridium
12%
Lanthanum oxides
14%
Leakage currents
12%
Magnetic anisotropy
100%
Magnetic properties
19%
Magnetocrystalline anisotropy
20%
Metallic superlattices
31%
Metals
25%
Moisture
21%
Monolayers
22%
Multilayers
73%
Nanodots
22%
Optical Kerr effect
25%
Oxygen
13%
Platinum
16%
Reflection high energy electron diffraction
40%
Seed
19%
Substrates
46%
Surface active agents
20%
Temperature
28%
Thin film transistors
23%
Thin films
67%
Tin
11%
Ultrahigh vacuum
14%
X ray diffraction
18%
Physics & Astronomy
acetylsalicylic acid
10%
adatoms
17%
agglomeration
16%
anisotropy
54%
annealing
14%
atomic force microscopy
25%
atoms
37%
augmentation
10%
capacitors
12%
conduction
10%
crystallization
32%
dielectric properties
12%
dimers
14%
dissociation
17%
electric potential
10%
electrical properties
18%
energy
15%
epitaxy
12%
fabrication
11%
germanium
21%
gold
9%
insulators
13%
inversions
10%
ion microscopes
13%
Kerr effects
13%
kinetics
15%
lanthanum oxides
11%
leakage
24%
magnetic properties
8%
metals
21%
moisture
19%
moisture resistance
10%
nucleation
8%
orbitals
13%
oscillations
10%
oxide films
10%
oxygen
12%
permittivity
16%
platinum
18%
room temperature
9%
seeds
22%
superlattices
11%
surface diffusion
13%
surfactants
17%
temperature
12%
thin films
41%
tin
14%
transistors
14%
ultrahigh vacuum
19%
x rays
10%
Chemical Compounds
Adatoms
16%
Agglomeration
5%
Alloy
8%
Aluminium Atom
8%
Amorphous Material
5%
Anisotropy
43%
Annealing
5%
Atomic Force Microscopy
7%
Compound Mobility
9%
Conductive Atomic Force Microscopy
9%
Crystal Growth
12%
Crystal Orientation
7%
Curie Temperature
5%
Dielectric Material
5%
Diffusion
16%
Displacement
10%
Dissociation
13%
Electrical Property
10%
Electronic State
10%
Electrooptical Effect
17%
Embrittlement
5%
Energy
17%
Energy Barrier
5%
Epitaxial Growth
37%
Glass Substrate
7%
Grain Boundary
6%
Hole Mobility
5%
Linear Muffin-Tin Orbital Method
16%
Liquid Film
25%
Magnetic Anisotropy
75%
Magnetic Property
12%
Magnetization
8%
Metal
15%
Molecular Cluster
18%
Monolayer
12%
Multilayer
62%
Nucleation
5%
Platinum
12%
Reflection High Energy Electron Diffraction
11%
Self-Diffusion
15%
Simulation
9%
Strain
8%
Superlattice
12%
Surface
15%
Surface Diffusion
7%
Surface Reconstruction
11%
Surfactant
8%