Engineering & Materials Science
Metallorganic vapor phase epitaxy
100%
Photoluminescence
95%
Growth temperature
86%
Metallorganic chemical vapor deposition
77%
Optical properties
60%
Temperature
50%
Epilayers
42%
Substrates
38%
Nanodots
37%
Electric properties
37%
Epitaxial growth
36%
Vapor phase epitaxy
36%
Molecular beam epitaxy
32%
Sapphire
31%
X rays
30%
Organic chemicals
29%
Flow rate
28%
Structural properties
28%
Zinc Selenide
26%
Chemical vapor deposition
25%
Doping (additives)
24%
Diodes
23%
Atomic force microscopy
21%
Linewidth
20%
Luminescence
17%
Metals
17%
X ray absorption
16%
Surface morphology
16%
Electrons
16%
Thin films
15%
Energy barriers
15%
Diamond films
15%
Full width at half maximum
15%
Deep level transient spectroscopy
15%
Defects
14%
Chemical analysis
14%
Crystalline materials
14%
Characterization (materials science)
13%
Buffer layers
13%
Blue shift
13%
Thermal effects
13%
Raman scattering
12%
X ray diffraction
11%
Epitaxial films
11%
Thermodynamics
11%
Annealing
11%
Voltage measurement
11%
X ray absorption near edge structure spectroscopy
10%
Vacancies
10%
Monolayers
10%
Physics & Astronomy
photoluminescence
92%
metalorganic chemical vapor deposition
80%
vapor phase epitaxy
74%
temperature
39%
flow velocity
36%
optical properties
35%
Schottky diodes
29%
x rays
26%
epitaxy
25%
electrical properties
24%
quantum dots
24%
indium
23%
defects
23%
traps
23%
decay
22%
Raman spectra
21%
molecular beam epitaxy
19%
sapphire
19%
spectroscopy
18%
luminescence
17%
vapor phases
15%
annealing
15%
life (durability)
14%
phonons
14%
electric contacts
13%
modulation
13%
indium phosphides
13%
buffers
12%
atomic force microscopy
12%
excitons
12%
energy
11%
metals
11%
hydrogenation
11%
diamond films
11%
gallium
10%
ammonia
10%
electrical measurement
9%
activation energy
9%
diodes
9%
temperature effects
9%
microscopy
9%
excitation
9%
thin films
9%
time constant
9%
near fields
8%
characterization
8%
fine structure
8%
plasmons
8%
arsenic
8%
heaters
8%
Chemical Compounds
Liquid Film
35%
Chemical Vapour Deposition
31%
Photoluminescence
25%
Optical Property
23%
Molecular Beam Epitaxy
22%
Electrical Property
19%
Epitaxial Growth
18%
Quantum Dot
18%
Flow Kinetics
15%
Threading Dislocation
13%
Alloy
11%
X-Ray
11%
Reaction Activation Energy
11%
Metallorganic Chemical Vapour Deposition
11%
Vapor Phase Epitaxy
10%
Monolayer
10%
Surface
8%
Background Concentration
8%
Breakdown Voltage
8%
Atomic Force Microscopy
7%
Exciton
7%
Buffer Solution
7%
Cathodoluminescence
6%
Selection Rule
6%
Near Edge X Ray Absorption Fine Structure Spectroscopy
6%
Extended X-Ray Absorption Fine Structure
6%
Energy
5%
Phonon
5%
Time
5%
Doping Material
5%
Wavelength
5%