Fröhlich vibrational modes in porous ZnSe studied by Raman scattering and Fourier transform infrared reflectance
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IRMER, Gert, MONAICO, Eduard, TIGINYANU, Ion, GARTNER, Gunter, URSAKI, Veaceslav, KOLIBABA, Gleb, NEDEOGLO, Dumitru. Fröhlich vibrational modes in porous ZnSe studied by Raman scattering and Fourier transform infrared reflectance. In: Journal of Physics D: Applied Physics, 2009, vol. 42, p. 0. ISSN 0022-3727. DOI: https://doi.org/10.1088/0022-3727/42/4/045405
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Journal of Physics D: Applied Physics
Volumul 42 / 2009 / ISSN 0022-3727 /ISSNe 1361-6463

Fröhlich vibrational modes in porous ZnSe studied by Raman scattering and Fourier transform infrared reflectance

DOI:https://doi.org/10.1088/0022-3727/42/4/045405

Pag. 0-0

Irmer Gert1, Monaico Eduard2, Tiginyanu Ion23, Gartner Gunter4, Ursaki Veaceslav3, Kolibaba Gleb5, Nedeoglo Dumitru5
 
1 Institut für Theoretische Physik, TU Bergakademie Freiberg,
2 Technical University of Moldova,
3 Institute of Applied Physics, Academy of Sciences of Moldova,
4 Institut of Experimental Physics, TU Bergakademie Freiberg,
5 Moldova State University
 
 
Disponibil în IBN: 6 aprilie 2018


Rezumat

Arrays of parallel pores with a diameter of around 60 nm have been introduced by anodic etching in ZnSe single crystals with a free electron concentration of 4 × 1017 cm-3. Porosity-induced Fröhlich vibrational modes were studied by Raman scattering and Fourier transform infrared spectroscopy. The experimental data are compared with the results of theoretical simulation based on the effective medium theory. Traces of Se phase were evidenced at the surface of the porous matrix after anodization, the Raman active modes of this phase being incident in the region of the occurrence of Fröhlich vibrational modes inherent to porous ZnSe. To identify reliably the Fröhlich modes, Raman spectra of porous ZnSe layers were explored under different resonance conditions with several excitation wavelengths and various excitation power densities.

Cuvinte-cheie
Fourier transform infrared spectroscopy, Raman scattering, Semiconducting zinc compounds, single crystals, Spectroscopic analysis