Photoacoustic study of
F. Firszt, S. Łęgowski, H. Μęczyńska, J. Szatkowski, J. Zakrzewski
Abstract
F. Firszt, S. Łęgowski, H. Μęczyńska, J. Szatkowski, J. Zakrzewski
Abstract
The photoacoustic spectroscopy (PAS) with piezoelectric transducer was employed to evaluate band gap energies in Zn1−xBexSe mixed crystals of different composition. The spectra were measured at 300 K and 90 K using continuos wave excitation. The Jackson-Amer model of photoacoustic effect was applied. The increase of the band-gap energy with increasing Be content is observed. The photoacoustic results are compared with those from photoluminescence spectra.
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The photoacoustic spectroscopy (PAS) with piezoelectric transducer was employed to evaluate band gap energies in Zn1−xBexSe mixed crystals of different composition. The spectra were measured at 300 K and 90 K using continuos wave excitation. The Jackson-Amer model of photoacoustic effect was applied. The increase of the band-gap energy with increasing Be content is observed. The photoacoustic results are compared with those from photoluminescence spectra.
Key concepts: Photoacoustic imaging in biomedicine, Photoacoustic spectroscopy, Photoluminescence, Band gap, Piezoelectricity, Photoacoustic effect, Materials science, Spectral line