Engineering & Materials Science
Silicon
100%
Passivation
65%
Photodiodes
50%
Germanium
47%
Quantum efficiency
43%
Solar cells
43%
Atomic layer deposition
37%
Silicon solar cells
36%
Photons
35%
Aluminum oxide
34%
Nanostructures
32%
Wavelength
31%
Boron
30%
Silicon oxides
25%
Defect density
25%
Infrared radiation
24%
Ultrahigh vacuum
23%
Thin films
23%
Hydrogenation
22%
Defects
20%
Substrates
20%
Doping (additives)
19%
Degradation
17%
Alumina
17%
Physics
15%
Optical properties
14%
Antireflection coatings
14%
Glass
14%
Two photon processes
13%
Charge carriers
12%
Coatings
11%
Temperature
10%
Etching
9%
Electric potential
9%
Oxide films
8%
Hot Temperature
8%
Copper
8%
Crystalline materials
7%
Sensors
7%
Metals
7%
Infrared detectors
7%
Fabrication
6%
Photodetectors
6%
Optical communication
6%
Crystal growth
6%
Oxides
6%
Detectors
5%
Chemical reactions
5%
Short circuit currents
5%
Current density
5%
Phosphorus
5%
Industry
5%
Metal nanoparticles
5%
Physics & Astronomy
photodiodes
48%
silicon
47%
aluminum oxides
43%
quantum efficiency
39%
grasses
26%
harnesses
24%
soaking
21%
passivity
20%
sensors
19%
sensitivity
19%
incidence
16%
germanium
15%
wavelengths
15%
defects
13%
blisters
11%
heat
11%
physics
11%
electrical resistivity
11%
performance
11%
antireflection coatings
10%
glass
10%
curves
9%
electric potential
9%
wafers
8%
industries
7%
near infrared radiation
6%
oxide films
6%
coatings
5%
degradation
5%
unity
5%
infrared detectors
5%
Chemical Compounds
Black
47%
Chemical Passivation
41%
Wavelength
23%
Photon
22%
Aluminium Oxide
22%
Surface
22%
Field Effect
21%
Solar Cell
17%
Nanomaterial
17%
Liquid Film
16%
Sample Preparation
14%
Heat
13%
Luminiscence Type
12%
Optical Communication
12%
Etching
12%
Leakage Current
11%
Delamination
10%
Oxide
9%
Crystal Growth
8%
Charge Carrier
8%
Boron Atom
7%
Phosphorus(.)
7%
Annealing
6%
Application
6%
Short Circuit
6%
Diffusion
5%
Chemistry
5%