Gd3Al2Ga3O12:Ce Scintillation Ceramic Elements for Measuring Ionizing Radiation in Gases and Liquids

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Samples of mesh-like scintillation ceramic elements with an intricate shape based on Gd3Al2Ga3O12:Ce garnet have been obtained for the first time by 3D-printing for use in scintillation flow detectors of α, β, and γ-ray radiations in gaseous and liquid media. A method for their production is described, results of measurements of the scintillation light yield in ceramic samples under exposure to α particles are presented, and ways of improving their scintillation characteristics are proposed. Their applicability to inhomogeneous flow scintillation cells used in high-performance liquid chromatography is discussed. The unique capabilities of the 3D-printing technology for creating intricately shaped detector elements with optimized efficiency are noted.

作者简介

A. Fedorov

Institute for Nuclear Problems, Belarus State University

Email: sokolov-petr@yandex.ru
220006, Minsk, Belarus

G. Dosovitskiy

Kurchatov Institute National Research Centre IREA

Email: sokolov-petr@yandex.ru
107076, Moscow, Russia

V. Smyslova

Kurchatov Institute National Research Centre IREA

Email: sokolov-petr@yandex.ru
107076, Moscow, Russia

V. Mechinsky

Institute for Nuclear Problems, Belarus State University

Email: sokolov-petr@yandex.ru
220006, Minsk, Belarus

D. Kuznetsova

Kurchatov Institute National Research Centre IREA

Email: sokolov-petr@yandex.ru
107076, Moscow, Russia

M. Korzhik

Institute for Nuclear Problems, Belarus State University

Email: sokolov-petr@yandex.ru
220006, Minsk, Belarus

P. Karpyuk

Kurchatov Institute National Research Centre IREA

Email: sokolov-petr@yandex.ru
107076, Moscow, Russia

A. Bondarev

Institute for Nuclear Problems, Belarus State University

Email: sokolov-petr@yandex.ru
220006, Minsk, Belarus

L. Ermakova

Kurchatov Institute National Research Centre IREA

Email: sokolov-petr@yandex.ru
107076, Moscow, Russia

V. Dubov

Kurchatov Institute National Research Centre IREA

Email: sokolov-petr@yandex.ru
107076, Moscow, Russia

P. Sokolov

Kurchatov Institute National Research Centre IREA

编辑信件的主要联系方式.
Email: sokolov-petr@yandex.ru
107076, Moscow, Russia

参考

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  11. Korzhik M., Borisevich A., Fedorov A., Gordienko E., Karpyuk P., Dubov V., Sokolov P., Mikhlin A., Dosovitskiy G., Mechinsky V., Kozlov D., Uglov V. // J. Lumin. 2021. V. 234. P. 117933. https://doi.org/10.1016/j.jlumin.2021.117933
  12. Korjik M., Alenkov V., Borisevich A., Buzanov O., Dormenev V., Dosovitskiy G., Dosovitsliy A., Fedorov A., Kozlov D., Mechinsky V., Novotny R.W., Tamulaitis G., Vasiliev V., Zaunick H.-G., Vaitkevičius A.A. // Nucl. Instrum. and Methods in Phys. Res. Section A. 2017. V. 871. P. 42. https://doi.org/10.1016/j.nima.2017.07.045
  13. Komissarenko D.A., Sokolov P.S., Evstigneeva A.D., Slyusar I.V., Nartov A.S., Volkov P.A., Lyskov N.V., Evdokimov P.V., Putlayev V.I., Dosovitsky A.E. // Journal of the European Ceramic Society. 2021. V. 41. P. 684. https://doi.org/10.1016/j.jeurceramsoc.2020.09.010
  14. Gordienko E., Fedorov A., Radiuk E., Mechinsky V., Dosovitskiy G., Vashchenkova E., Kuznetsova D., Retivov V., Dosovitskiy A., Korjik M., Sandu R. // Optical Materials. 2018. V. 78. P. 312. https://doi.org/10.1016/j.optmat.2018.02.045

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版权所有 © А.А. Федоров, В.В. Дубов, Л.В. Ермакова, А.Г. Бондарев, П.В. Карпюк, М.В. Коржик, Д.Е. Кузнецова, В.А. Мечинский, В.Г. Смыслова, Г.А. Досовицкий, П.С. Соколов, 2023