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An enhanced resolution technique for determination of the distribution of localized states in semiconductors from transient photocurrents
C. Main,
S. Reynolds
Research output
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Contribution to journal
›
Article
›
peer-review
4
Citations (Scopus)
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Dive into the research topics of 'An enhanced resolution technique for determination of the distribution of localized states in semiconductors from transient photocurrents'. Together they form a unique fingerprint.
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Keyphrases
Localized States
100%
Transient Photocurrent
100%
Semiconductors
100%
Enhanced Resolution
100%
Resolution Method
100%
Numerical Methods
50%
Energy Resolution
50%
Function Model
50%
Least Square Fitting
50%
State Distribution
50%
Laplace Transformation
50%
Discrete Version
50%
Implicit Equation
50%
Fitting Algorithm
50%
Ill-posed Integral Equation
50%
Exact Model
50%
Fourier Transformation
50%
E-distribution
50%
Engineering
Transients
100%
Localized State
100%
Photocurrent
100%
Least Square
50%
Energy Engineering
50%
Numerical Methods
50%
Initial Stage
50%
Exact Model
50%
Mathematics
Numerical Methods
100%
State Distribution
100%
Approximates
100%
Integral Equation
100%
Least Square Fitting
100%
Physics
Photoelectric Emission
100%
Transients
100%
Mathematical Method
50%
Integral Equations
50%
Chemistry
Photocurrent
100%