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- W2999014067 abstract "Abstract In this paper we describe a new photoacoustic cell design that allows simultaneous photoacoustic and photoconductive measurements of solid semiconductor samples. The two techniques are complementary. Photoacoustic spectroscopy is known for being a direct monitor of nonradiative de-excitation processes, while photoconductivity spectroscopy is a direct monitor on the photocurrent generated following the absorption of the radiation source. If used simultaneously, they should unveil valuable information on the properties of materials. As an application to the refined spectrometer we present a comparative study on the optical absorption properties of CuInSe2 single. The measurements were performed at room temperature close to the absorption edge. Appropriate theoretical models have been used to evaluate the absorption coefficient spectral dependence from measured data. The combined techniques showed varying sensitivities in detecting defects levels in different regions of the absorption spectrum of the compound, and thus offering more information on the defects structure of semiconductors in a quicker way." @default.
- W2999014067 created "2020-01-23" @default.
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- W2999014067 date "2020-03-01" @default.
- W2999014067 modified "2023-09-24" @default.
- W2999014067 title "An optical absorption properties investigation of CuInSe2 by a simultaneous photoacoustic-photoconductivity measuring technique" @default.
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- W2999014067 doi "https://doi.org/10.1016/j.infrared.2020.103194" @default.
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