Logo BSU

Please use this identifier to cite or link to this item: https://elib.bsu.by/handle/123456789/233886
Title: The Effect of Swift Heavy Ion Irradiation on the Microstructures of YAP, YAG and YIG
Authors: Janse van Vuuren, Arno
Skuratov, Vladimir
O’Connell, Jacques
Saifulin, Maxim
Aralbayeva, Gul'nara
Dualetbekova, Alma
Zdorovets, Maxim
Keywords: ЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физика
Issue Date: 2019
Publisher: Минск : БГУ
Citation: Взаимодействие излучений с твердым телом = Interaction of Radiation with Solids : материалы 13-й Междунар. конф., Минск, Беларусь, 30 сент. – 3 окт. 2019 г. / редкол.: В. В. Углов (отв. ред.) [и др.]. – Минск : БГУ, 2019. – С. 123-125.
Abstract: The radiation stability of yttrium-based oxides as important ingredients of oxide dispersion strengthened alloys is a subject of extensive study. Oxide particles containing yttrium have been shown to be very stable at elevated temperatures. Of particular interest to investigations in this field is the radiation damage induced by swift heavy ion (SHI), which serves to simulate fission fragment impact. The aim of this investigation is to assess the effects of SHI irradiation on the microstructure of single crystalline YAP (Y-Al-Perovskite, YAlO3 ), YAG (Y-Al-Garnet, Y3Al5O12) and YIG (Y-Fe-Garnet, Y3Fe5O12). The samples used in this investigation were irradiated with Ar, Bi, Kr and Xe ions with energies ranging from 46 MeV to 2.6 GeV to fluences in the range of 10 10 - 10 14 cm-2. A subset of these samples was irradiated at temperatures ranging from LNT to 700 °C. The overall intention of these experiments was to determine the threshold stopping power for latent track formation and the influence of increasing stopping power and irradiation temperature on track morphology, employing Transmission Electron Microscopy techniques. Since these materials are similar in elemental composition but differ in crystal structure, the differences in microstructure of latent tracks is very informative when considered within the framework of the thermal spike model.
Description: Секция 2. Радиационные эффекты в твердом теле = Section 2. Radiation Effects in Solids
URI: http://elib.bsu.by/handle/123456789/233886
ISSN: 2663-9939
Appears in Collections:2019. Взаимодействие излучений с твердым телом = Interaction of Radiation with Solids

Files in This Item:
File Description SizeFormat 
123-125.pdf607,94 kBAdobe PDFView/Open
Show full item record Google Scholar



Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.