Engineering & Materials Science
Aberrations
8%
Amorphous silicon
14%
Annealing
16%
Atomic layer deposition
11%
Atoms
8%
Buffer layers
10%
Carrier concentration
10%
Carrier lifetime
21%
Carrier transport
11%
Characterization (materials science)
9%
Chemical analysis
17%
Chemical vapor deposition
11%
Conduction bands
6%
Conversion efficiency
7%
Crystalline materials
22%
Crystals
10%
Current density
11%
Defect density
8%
Defects
24%
Degradation
16%
Diamonds
10%
Diffraction
12%
Diodes
8%
Dislocations (crystals)
8%
Doping (additives)
30%
Electric fields
8%
Electric potential
11%
Electric properties
7%
Electrodes
9%
Electron beams
6%
Electron holography
24%
Electron microscopes
8%
Electron microscopy
13%
Electrons
33%
Energy gap
41%
Epilayers
9%
Epitaxial films
11%
Epitaxial growth
23%
Erbium
12%
Fabrication
13%
Growth temperature
10%
Heating
13%
Heterojunctions
84%
High electron mobility transistors
24%
High resolution electron microscopy
14%
Hot Temperature
7%
Hydrides
7%
Imaging techniques
13%
Impurities
6%
Indium
17%
Infrared radiation
16%
Lasers
17%
Lattice constants
7%
Luminescence
9%
Metallorganic chemical vapor deposition
12%
Metals
16%
Molecular beam epitaxy
80%
Multi-junction solar cells
29%
Nanostructures
7%
Nanowires
48%
Nitrides
12%
Open circuit voltage
14%
Optical properties
25%
Optoelectronic devices
10%
Oxides
19%
Passivation
23%
Perovskite
14%
Phonons
19%
Photodetectors
12%
Photoluminescence
54%
Photons
8%
Plasmas
13%
Plasmonics
11%
Polarization
12%
Quantum efficiency
22%
Sapphire
9%
Scattering
10%
Semiconductor lasers
10%
Semiconductor materials
34%
Semiconductor quantum wells
35%
Short circuit currents
7%
Silicates
9%
Silicon
51%
Silicon solar cells
12%
Simulators
9%
Single crystals
11%
Solar cells
100%
Structural properties
13%
Substrates
52%
Superlattices
22%
Surface emitting lasers
7%
Telegraph
8%
Temperature
37%
Thin films
18%
Threshold voltage
9%
Transistors
9%
Transmission electron microscopy
28%
Wavelength
26%
X ray diffraction
8%
X rays
13%
Chemical Compounds
Alloy
19%
Ambient Reaction Temperature
9%
Amorphous Material
7%
Amorphous Silicon
10%
Andreev Reflection
5%
Annealing
12%
Application
13%
Atomic Layer Epitaxy
9%
Band Gap
17%
Band Offset
6%
Buffer Solution
7%
Chemical Passivation
12%
Chemical Vapour Deposition
10%
Compound Mobility
9%
Crystal Defect
5%
Current Density
9%
Diamond
7%
Diffusion
7%
Doping Material
9%
Electrical Property
6%
Electron Microscopy
8%
Electron Mobility
12%
Electron Particle
20%
Ellipsometry
5%
Energy
11%
Epitaxial Film
7%
Epitaxial Growth
14%
Erbium
9%
Grain Boundary
5%
Hydride
5%
Inductor
7%
Length
6%
Liquid Film
22%
Metal
5%
Microstructure
6%
Misfit Dislocation
6%
Molecular Beam
5%
Molecular Beam Epitaxy
61%
Nanomaterial
5%
Nanowire
28%
Nitride
6%
Nonconductor
5%
Optical Gain
5%
Optical Phonon
7%
Optical Property
15%
Optoelectronics
8%
Oxide
10%
Phonon
6%
Photoluminescence
25%
Plasma
5%
Polarization
9%
Polycrystalline Solid
5%
Quantum Dot
8%
Reduction
5%
Resistance
5%
Scanning Transmission Electron Microscopy
5%
Semiconductor
31%
Short Circuit
6%
Simulation
26%
Single Crystalline Solid
6%
Solar Cell
60%
Stacking Fault
6%
Strain
12%
Superlattice
13%
Surface
14%
Tandem Solar Cell
12%
Threading Dislocation
10%
Time
6%
Transmission Electron Microscopy
14%
Velocity
5%
Voltage
24%
Wavelength
14%
Physics & Astronomy
aberration
7%
annealing
6%
atomic layer epitaxy
8%
Bragg reflectors
5%
buffers
7%
carrier lifetime
8%
cavities
8%
characterization
18%
chips
5%
chlorides
7%
crystals
5%
current density
5%
dark current
5%
defects
18%
diamonds
6%
diffraction
7%
diodes
5%
electric potential
8%
electron microscopes
7%
electron microscopy
15%
electronics
7%
electrons
17%
ellipsometry
6%
energy
7%
epitaxy
6%
erbium
6%
fabrication
8%
field effect transistors
6%
heating
5%
heterojunctions
9%
high electron mobility transistors
15%
high resolution
11%
holography
19%
indium
5%
injection
5%
insulators
5%
lasers
6%
lasing
7%
luminescence
5%
metalorganic chemical vapor deposition
9%
metals
7%
microstructure
5%
minority carriers
5%
molecular beam epitaxy
41%
nanowires
26%
nitrides
6%
optical properties
11%
oxides
7%
oxygen
5%
passivity
6%
performance
9%
phonons
5%
photoluminescence
22%
photometers
10%
polarization
8%
profiles
7%
quantum dots
10%
quantum efficiency
7%
quantum wells
21%
room temperature
10%
scattering
6%
semiconductor lasers
6%
silicates
6%
silicon
16%
simulation
11%
single crystals
5%
solar cells
33%
spectroscopy
5%
superlattices
19%
surface emitting lasers
6%
temperature
12%
thin films
10%
transmission electron microscopy
19%
traps
6%
vapor deposition
5%
wafers
5%
wavelengths
13%
x rays
8%