Magnetic Susceptibility of Si0,97Ge0,03 Filamentous Crystals Irradiated by Protons

<p class="ArticleAnnotation">The article deals with the filamentous Si<sub>0,97</sub>Ge<sub>0,03</sub> crystals with transverse dimensions of 40 ± 2 μm grown by the method of chemical transport reactions in the closed bromide system using gold as a growth init...

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Bibliographic Details
Main Authors: Yu. Pavlovskyy, P. Lytovchenko, I. Ostrovskyy, N. Pavlovska
Format: Article
Language:English
Published: Vasyl Stefanyk Precarpathian National University 2019-07-01
Series:Фізика і хімія твердого тіла
Subjects:
Online Access:http://journals.pu.if.ua/index.php/pcss/article/view/3823
Description
Summary:<p class="ArticleAnnotation">The article deals with the filamentous Si<sub>0,97</sub>Ge<sub>0,03</sub> crystals with transverse dimensions of 40 ± 2 μm grown by the method of chemical transport reactions in the closed bromide system using gold as a growth initiator. The focus of research was the influence of proton irradiation with doses up to 1∙10<sup>17</sup> p<sup>+</sup>/cm<sup>-2</sup> and the following thermal treatments at temperatures of 200 - 500°C on the magnetic susceptibility of these crystals. The dependence of the magnetic susceptibility on the intensity of the magnetic field of the proton irradiated filamentous Si<sub>0,97</sub>Ge<sub>0,03</sub> crystals is described within the framework of the Langevin atom paramagnetism model and explained by the formation of defects of the vacancy type. The revealed increase in the radiation stability of Si<sub>0,97</sub>Ge<sub>0,03</sub> crystals followed the combined effect of radiation and subsequent thermal treatments.</p>
ISSN:1729-4428
2309-8589