4.6 Article

Composition Engineering of (Lu,Gd,Tb)3(Al,Ga)5O12:Ce Film/Gd3(Al,Ga)5O12:Ce Substrate Scintillators

期刊

CRYSTALS
卷 12, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/cryst12101366

关键词

scintillators; garnets; radiation detectors; bulk crystal; thin single-crystalline films; liquid phase epitaxy; ionization radiation

资金

  1. Polish National Agency for Academic Exchange [NCN 2018/31/B/ST8/03390]
  2. Czech Ministry of Education, Youth and Sports [PPN/ULM/2020/1/00298/U/00001]
  3. Czech Science Foundation [SOLID21 CZ.02.1, 01/0.0/0.0/16_019/0000760]
  4. [GA21-17731S]

向作者/读者索取更多资源

This paper addresses the development of composite scintillation materials that can provide simultaneous real-time monitoring of different types of ionizing radiation. The materials are capable of distinguishing the type of radiation through the different time characteristics of the scintillation response, making them promising for various applications.
The paper addresses the development of composite scintillation materials providing simultaneous real-time monitoring of different types of ionizing radiation (alpha-, beta-particles, gamma-rays) in mixed fluxes of particles and quanta. The detectors are based on composite heavy oxide scintillators consisting of a thin single-crystalline film and a bulk single-crystal substrate. The film and substrate respond to certain types of ionizing particles, forming together an all-in-one composite scintillator capable of distinguishing the type of radiation through the different time characteristics of the scintillation response. Here, we report the structure, composition, and scintillation properties under different ionizing radiations of (Lu,Gd,Tb)(3)(Al,Ga)(5)O-12:Ce films deposited using liquid phase epitaxy onto Gd-3(Al1-xGax)(5)O-12:Ce (GAGG:Ce) single-crystal substrates. The most promising compositions with the highest light yields and the largest differences in scintillation decay timing under irradiation with alpha-, beta-particles, and gamma-rays were selected. Such detectors are promising for environmental security purposes, medical tomography, and other radiation detection applications.

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