Compatibility of TiO2 reflective material with Ce:GAGG scintillators in harsh environments

  • Park, Chansun; 
  • Elmughrabi, Abdallah; 
  • Melis, Alima; 
  • Kim, Sangsu; 
  • Cho, Shinhaeng; 
  • ... Yeom, Jung-Yeol
Citations

WEB OF SCIENCE

4
Citations

SCOPUS

5

초록

In this study, we developed Ce:GAGG ceramic scintillators (containing 5 x 5 x 2 mm3 3 Ce:GAGG single crystals) encapsulated by different light reflectors, namely, Teflon (400 mu m), an enhanced specular reflector film (65 mu m), and a titanium dioxide (TiO2) 2 ) reflector with different thicknesses and measured their gamma-ray spectra under irradiation by a 137 Cs radioactive source. The reflectance of a 100-mu m-thick (optimal thickness) TiO2 2 layer demonstrated higher reflectance than other the TiO2 2 reflectors of other thicknesses, and resulted in a high light- collection efficiency. To assess the temperature dependence of the reflectors, the samples were heated up to 300 degrees C in air. The measured reflectance decreased with increasing temperature, and the color of the reflector's surface changed. The observed variations in the surface morphology, measured by scanning electron microscopy, corresponded to the determined reflectance of the TiO2 2 layer. Upon heating above 200 degrees C in air, the TiO2 2 layer decomposed into other oxides, with a simultaneous increase in its surface porosity. By contrast, the Ce:GAGG single-crystal sample heated at 300 degrees C in vacuum showed only a negligible color variation, retained 80.3% of its initial reflectance, and exhibited an energy resolution of 12.8%. This result suggests oxidation as the potential cause of performance degradation. In addition, a TiO2 2 layer covered with a heat-resistant epoxy isolated reflections from air, thus exhibiting a performance comparable to that of the without-epoxy sample. This result confirmed that a passivation layer may allow the use of reflectors at high temperatures. The results obtained in this study suggest that a TiO2 2 layer can be used as a long-wavelength reflector in oxide and other types of scintillators for efficient radiation detection in harsh environments, including air-free environments, such as in aerospace, under vacuum conditions or in the presence of a protective passivation layer.

키워드

Scintillator; Reflectance; Titanium dioxide; Radiation measurement; Light output; DEPENDENCE; LIGHT
제목
Compatibility of TiO2 reflective material with Ce:GAGG scintillators in harsh environments
저자
Park, Chansun; Elmughrabi, Abdallah; Melis, Alima; Kim, Sangsu; Cho, Shinhaeng; Yeom, Jung-Yeol
DOI
10.1016/j.optmat.2024.116165
발행일
2024-11
유형
Article
저널명
Optical Materials
권
157