Synchrotron radiation-based X-rays imaging by Dy3+doped silicoborate glass scintillator: Fabrication, optical, luminescence and scintillation performances

  • Intachai, N.; 
  • Rachniyom, W.; 
  • Wantana, N.; 
  • Tariwong, Y.; 
  • Khrongchaiyaphum, F.; 
  • ... Kim, H. J.; 
  • 외 8명
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5

초록

Dysprosium-doped glass scintillators have gained increasing attention due to their promising luminescent properties for applications in radiation detection, photonics, and optoelectronic devices. Glass matrices doped with Dy3+ ions exhibit strong emissions in the visible spectrum, particularly in the yellow region around 575 nm, making them suitable for scintillation application. These glasses are prepared via the melt-quenching technique at 1500 degrees C. The resulting materials are transparent and exhibit high densities, reaching up to 4.24 g/cm3. Absorption spectra reveal distinct bands that confirm the existence of Dy3+ ions into the glass matrix. Photoluminescence measurements indicate that the glass achieves maximum emission intensity at a Dy2O3 concentration of 1.0 mol%, while X-ray induced luminescence peaks at 1.5 mol%. The measured decay time of the luminescence is observed within the millisecond range. X-ray imaging can be conducted at the Synchrotron Light Research Institute (Beamline 1.2W), providing high-resolution and precise analysis of scintillation performance. Dy3+-doped glass scintillators exhibit excellent optical properties and strong emission intensity, highlighting their potential as innovative materials for next-generation scintillation applications.

키워드

Dysprosium; Glass scintillator; Synchrotron; X-ray imaging
제목
Synchrotron radiation-based X-rays imaging by Dy3+doped silicoborate glass scintillator: Fabrication, optical, luminescence and scintillation performances
저자
Intachai, N.; Rachniyom, W.; Wantana, N.; Tariwong, Y.; Khrongchaiyaphum, F.; Sarumaha, C. S.; Pakawanit, P.; Phoovasawat, C.; Kanjanaboos, P.; Rueangsawang, W.; Kim, H. J.; Niamin, H.; Kothan, S.; Kaewkhao, J.
DOI
10.1016/j.radphyschem.2025.113100
발행일
2025-12
유형
Article
저널명
Radiation Physics and Chemistry
권
237