Engineering
Thin Films
100%
Design
100%
Waveguide
66%
Scattering
66%
Efficiency
66%
Enhancement
33%
Fold Increase
33%
Solar Spectrum
33%
Optimal Design
33%
Pathlength
33%
Nanoscale
33%
Design Method
33%
Systematic Approach
33%
Iterative Procedure
33%
Active Material
33%
Light Absorption
33%
Film Solar Cell
33%
Short-Circuit Current Density
33%
Performance
33%
Couplings
33%
Photonics
33%
Genetic Algorithm
33%
Based Solar Cell
33%
INIS
design
100%
thin films
100%
trapping
100%
organic solar cells
100%
layers
66%
absorption
66%
scattering
33%
efficiency
33%
topology
33%
reflection
33%
solar cells
33%
waveguides
33%
balances
16%
nanostructures
16%
performance
16%
control
16%
variations
16%
iterative methods
16%
spectra
16%
coupling
16%
engineers
16%
incidents
16%
genetic algorithms
16%
sun
16%
current density
16%
short circuits
16%
refraction
16%
Chemistry
Organic Solar Cells
100%
Liquid Film
100%
Structure
100%
Trapping
100%
Solar Cell
50%
Procedure
50%
Scattering
50%
Reflection
50%
Current Density
25%
Short Circuit
25%
Refraction
25%
Intrathoracic
25%
Analytical Method
25%
Time
25%
Spectra
25%
Wave
25%
Material Science
Thin Films
100%
Waveguide
100%
Absorbance
100%
Solar Cell
100%
Electronic Circuit
50%
Material
50%
Density
50%
Indium Tin Oxide
50%
Physics
Thin Films
100%
Solar Cell
100%
Light
100%
Nanoscale
12%
Broadband
12%
Electromagnetic Absorption
12%
Solar Spectra
12%
Short Circuit
12%
Refraction
12%
Physical Process
12%
Performance
12%
Topology
12%
Variations
12%
Sunlight
12%