Запис Детальніше

Influence of y-irradiation on optical properties of GaSe crystals

Electronic Archive of Sumy State University

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Title Influence of y-irradiation on optical properties of GaSe crystals
 
Creator Zhirko, Yu.I.
Skubenko, N.A.
Dubinko, V.I.
Kovalyuk, Z.D.
Sydor, O.M.
 
Subject semiconductor sensors
полупроводниковые сенсоры
напівпровідникові сенсори
 
Description Performed in this work are low-temperature (T = 4.5K) investigations of exciton
photoluminescence spectra in layered GaSe crystals both non-doped and doped with Zn
and Sn in concentrations < 0.01 wt. %. The crystals were irradiated with y-quanta of the
energy within the range 0 to 34 MeV with the doses up to 10^14 y/cm2. It has been shown
that irradiation with the above doses results in improvement of quality in non-doped
GaSe crystals: there disappears the “thin structure” of the emission line inherent to free
excitons related with stacking fault defects of crystalline layers, observed is ordering the
sets of bound exciton lines related with deep acceptors. As a consequence, there observed
is an essential increase in the parameter S0 – integrated intensity of radiative
recombination of free and bound excitons.
Analogous changes related with healing of defects in GaSe crystalline lattice are
observed after doping with Zn impurity. Irradiation of these crystals with y-quanta causes
increasing S0, too. By contrast, doping with Sn impurity results in a sharp drop of S0
that begins to grow after irradiation with y-quanta.
 
Publisher Sumy State University
 
Date 2011-11-24T06:29:43Z
2011-11-24T06:29:43Z
2011
 
Type Article
 
Identifier Influence of y-irradiation on optical properties of GaSe crystals [Текст] / Yu.I. Zhirko, N.A. Skubenko, V.I. Dubinko et al. // Nanomaterials: applications & properties. Proceedings : 1-st International conference, Alushta, Crimea, 27-30 Semptember 2011 / Edited by: A. Pogrebnjak, T. Lyutyy, S. Protsenko. — Sumy : Sumy State University, 2011. — V.2, P.ІІ. — C. 364-370.
http://essuir.sumdu.edu.ua/handle/123456789/20899
 
Language en