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Optical spectroscopy studies of Cu
2
ZnSnSe
4
thin films
M. V. Yakushev
, I. Forbes
, A. V. Mudryi
, M. Grossberg
, J. Krustok
, N. S. Beattie
, M. Moynihan
, A. Rockett
, R. W. Martin
Materials Science and Engineering
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2
ZnSnSe
4
thin films'. Together they form a unique fingerprint.
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Keyphrases
Free Electrons
100%
Band Gap
100%
Optical Spectroscopy
100%
Recombination
100%
Spectroscopy Studies
100%
Photoluminescence Spectra
100%
Low Intensity
100%
Selenization
100%
Recombination Mechanism
100%
Luminescence
100%
Band Intensity
100%
Energy Levels
100%
Magnetron Sputtering
100%
Absorption Spectra
100%
Phonon Replicas
100%
Excitation Power
100%
Metal Precursor
100%
Free Hole
100%
Arrhenius
100%
Two-pair
100%
Donor-acceptor Pair Recombination
100%
Spatial Potential
100%
Changing Excitation
100%
Quenching Analysis
100%
Potential Fluctuations
100%
Engineering
Intensity Band
100%
Magnetron
100%
Recombination Mechanism
100%
Arrhenius
100%
Metal Precursor
100%
Quality Material
100%
Selenisation
100%
Free Hole
100%
Spectral Band
100%
Band Gap
100%
Free Electron
100%
Physics
Absorption Spectra
100%
Magnetron
100%
Free Electron
100%
Photoluminescence
100%
Phonon
100%