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Fizika i Tekhnika Poluprovodnikov, 2018 Volume 52, Issue 10, Pages 1120–1125 (Mi phts5704)

Spectroscopy, interaction with radiation

Luminescence and stimulated emission of polycrystalline Cu(In,Ga)Se$_{2}$ films deposited by magnetron-assisted sputtering

I. E. Svitsiankoua, V. N. Pavlovskiia, E. V. Lutsenkoa, G. P. Yablonskiia, V. Y. Shiripov, E. A. Khokhlov, A. V. Mudryib, V. D. Zhivulkob, O. M. Borodavchenkob, M. V. Yakushevc

a B. I. Stepanov Institute of Physics, National Academy of Sciences of Belarus, Minsk
b Scientific-Practical Materials Research Centre of NAS of Belarus, Minsk, Belarus
c Institute of Metal Physics, Ural Division of the Russian Academy of Sciences, Ekaterinburg

Abstract: The stimulated emission of Cu(In,Ga)Se$_{2}$ alloy thin films formed by magnetron-assisted sputtering onto a sodium-fluoride layer deposited onto a molybdenum layer on a glass substrate is observed. The structural and optical parameters of the films are determined by scanning electron microscopy, local X-ray spectral microanalysis, X-ray structural analysis, and low-temperature luminescence ($T$ = 10 K) measurements in the range of excitation levels of 1.6–75 kW cm$^{-2}$ provided by nanosecond nitrogen-laser pulses. The stimulated emission threshold corresponds to $\sim$25 kW cm$^{-2}$. Comparative analysis of the emission of Cu(In,Ga)Se$_{2}$ thin films suggests that the introduction of sodium results in significant improvement of the structural quality, specifically, in a decrease in the density of energy states in the band tails and in a decrease in the concentration of nonradiative-recombination centers.

Keywords: Assisted Magnetron Sputtering, Stimulated Emission, Molybdenum Layer, Band Tail, Interband Radiative Recombination.

Received: 04.04.2018
Accepted: 16.04.2018

DOI: 10.21883/FTP.2018.10.46450.8880


 English version:
Semiconductors, 2018, 52:10, 1238–1243

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