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Temperature dependence of Ce luminescence characteristics in LaBr3: Ce crystal

  • Shixuan Guo
  • , Kejing Liu
  • , Zihang Lin
  • , Zhe Kang
  • , Jinbo Liu
  • , Ziang Yin
  • , Zhuochen Cai
  • , Yi Liu
  • , Xianggang Zhang
  • , Fa Luo
  • , Shitao Xiong
  • , Shusheng Wang
  • , Xuxin He
  • , Aizhong Yue
  • , Qinghua Zhao
  • , Rongrong Guo
  • , Tao Wang
  • Northwestern Polytechnical University Xian
  • Ministry of Industry and Information Technology
  • Xiamen University of Technology
  • China National Logging Corporation

科研成果: 期刊稿件文章同行评审

7 引用 (Scopus)

摘要

Despite the large interest in the scintillation properties of LaBr3:Ce, a detailed understanding of the underlying mechanism of temperature-dependence properties of Ce luminescence remains elusive. This study introduces a self-designed spectral apparatus to explore these properties in LaBr3:5%Ce. We observed a redshift phenomenon and band changes in the emission peak bands, indicating a reduction of the bond length between Ce and the host with increasing temperature. Moreover, the probability of low-energy peak emission decreases and the probability of high-energy peak emission increases, with increasing temperature was observed, suggesting a correlation with the proximity of Ce's 4f energy level to the valence band. Utilizing intensity parameters from the spectra, we identified the impact of temperature on LaBr3:Ce's self-absorption effect, revealing a significant self-absorption effect at the high-energy peak for the first time. A simple self-absorption model indicated that, despite high quantum efficiency of Ce, the overall self-absorption is minimal, establishing a correlation between the self-absorption coefficient of the high-energy peak and overall absorption. This research offers insights for developing radiation-resistant high-temperature luminescent devices and advances the field of high-temperature luminescent materials.

源语言英语
文章编号120956
期刊Journal of Luminescence
277
DOI
出版状态已出版 - 1月 2025

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