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

科研成果: 期刊稿件文章同行评审

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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