Urbach's tail in the absorption spectra of CuIn5Se8and CuGa3Se5single crystals
Autor: | Sergiu Levcenko, José Manuel Merino, V. E. Tezlevan, N. N. Syrbu, A. Nateprov, Máximo León, Ernest Arushanov |
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Rok vydání: | 2006 |
Předmět: |
Range (particle radiation)
Absorption spectroscopy Condensed matter physics Chemistry Analytical chemistry Surfaces and Interfaces Electron Photon energy Condensed Matter Physics Surfaces Coatings and Films Electronic Optical and Magnetic Materials symbols.namesake Absorption edge Attenuation coefficient Materials Chemistry symbols Einstein solid Electrical and Electronic Engineering Stoichiometry |
Zdroj: | physica status solidi (a). 203:2909-2912 |
ISSN: | 1862-6319 1862-6300 |
Popis: | Optical absorption spectra of CuIn 5 Se 8 and CuGa 3 Se 5 single crystals grown by chemical vapour transport were investigated in the range of 10-300 K. The logarithmic variation of the absorption coefficient with photon energy observed in both compounds just below the fundamental absorption edge shows a linear dependence at different temperatures in agreement with Urbach's rule. The Urbach energy as well as the energy associated with the electron/exciton-phonon interaction related to Urbach's tail are estimated. The latter is found to be around 52 (41) meV for CuIn 5 Se 8 (CuGa 3 Se 5 ). It is lower than that {58 (60) meV} earlier reported for these compounds and confirms higher structural quality of samples studied. It is shown that the temperature of the Urbach energy can be modeled in CuIn 5 Se 8 (CuGa 3 Se 5 ) as an Einstein oscillator with the Einstein temperature equal to 222 (266) K. It is found that in the material studied structural disorder is dominant at 300 K. It may be caused by some compositional deviation from stoichiometry. The latter was observed in the studied samples by using the EDAX method. |
Databáze: | OpenAIRE |
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