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Distinctive features of diffusion-controlled radiation defect recombination in stoichiometric magnesium aluminate spinel single crystals and transparent polycrystalline ceramics

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Author
Lushchik, Aleksandr Ch
Feldbach, Eduard Kh
Kotomin, Eugene A.
Kudryavtseva, Irina
Kuzovkov, Vladimir N.
Popov, Anatoli I.
Seeman, Viktor O.
Shablonin, Evgeni
Date
2020
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Abstract
MgAl2O4 spinel is important optical material for harsh radiation environment and other important applications. The kinetics of thermal annealing of the basic electron (F, F+) and hole (V) centers in stoichiometric MgAl2O4 spinel irradiated by fast neutrons and protons is analyzed in terms of diffusion-controlled bimolecular reactions. Properties of MgAl2O4 single crystals and optical polycrystalline ceramics are compared. It is demonstrated that both transparent ceramics and single crystals, as well as different types of irradiation show qualitatively similar kinetics, but the effective migration energy Ea and pre-exponent D0 are strongly correlated. Such correlation is discussed in terms of the so-called Meyer-Neldel rule known in chemical kinetics of condensed matter. The results for the irradiated spinel are compared with those for sapphire, MgO and other radiation-resistant materials.
URI
https://www.nature.com/articles/s41598-020-64778-8
https://dspace.lu.lv/dspace/handle/7/52238
DOI
10.1038/s41598-020-64778-8
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  • Zinātniskie raksti (CFI) / Scientific articles [604]

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