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Electronic energy transfer in an impurity band
Klaus Godzik
*
,
Joshua Jortner
*
Corresponding author for this work
School of Chemistry
Weizmann Institute of Science
Research output
:
Contribution to journal
›
Article
›
peer-review
27
Scopus citations
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Keyphrases
Impurity Band
100%
Electronic Energy Transfer
100%
Time-dependent Diffusion Coefficient
100%
Approximate Results
50%
Exchange Interaction
50%
General Characteristics
50%
Triplet
50%
Master Equation
50%
Average Density
50%
Time-resolved
50%
Strong Scattering
50%
Spectral Diffusion
50%
Transfer Process
50%
Mean Square Displacement
50%
Pair Approximation
50%
Electronic Transfer
50%
Disordered Materials
50%
Memory Term
50%
Generalized Diffusion Equation
50%
Engineering
Energy Engineering
100%
Diffusion Coefficient
100%
Explicit Expression
50%
Diffusion Equation
50%
Master Equation
50%
Square Displacement
50%
Transfer Process
50%
Pair Approximation
50%
Term Memory
50%
Chemistry
Fluorescence Resonance Energy Transfer
100%
Diffusion Coefficient
100%
Transfer Process
50%
Exchange Interaction
50%
Master Equation
50%
Disordered Material
50%
Mathematics
Electronic Energy
100%
Mean Square
50%
Approximates
50%
Explicit Expression
50%
Diffusion Equation
50%
Master Equation
50%
Physics
Energy Transfer
100%
Diffusion Coefficient
100%
Transfer Process
50%
Material Science
Diffusivity
100%
Density
50%
Transfer Process
50%