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JOURNAL OF SYNTHETIC CRYSTALS ›› 2023, Vol. 52 ›› Issue (12): 2161-2166.

• Research Articles • Previous Articles     Next Articles

Growth and Properties Study of LaBr3∶Ce,Sr Scintillation Crystal

WANG Haili1,2, ZHOU Nanhao1,2, XU Wanfen2, ZHANG Wei1,2, LI Huanying3, HAN Jiahong1,2, CHEN Jianrong1,2   

  1. 1. Beijing Sinoma Synthetic Crystals Co., Ltd., Beijing 100018, China;
    2. Sinoma Synthetic Crystals Co., Ltd., Beijing 100018, China;
    3. Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 201899, China
  • Received:2023-08-11 Online:2023-12-15 Published:2023-12-26

Abstract: In this paper, ϕ25 mm lanthanum bromide scintillation crystals with 5%Ce3+ and different Sr2+ doping concentrations (0.1%, 0.3%, 0.5% in molar ratio) were successfully grown by spontaneous nucleation vertical Bridgman method. X-ray excited emission spectra, transmission spectra and pulse height spectra of these crystals were measured. Results show that, the emission spectra waveform of LaBr3∶Ce crystals with different Sr2+ doping concentrations is basically consistent under X-ray excitation, and the emission peak shows a significant red shift compared with that of sample without Sr2+ doping. With the increase of Sr2+doping concentration, the emission peak of LaBr3∶Ce,Sr crystal shows a slight red shift. There is no obvious absorption peak range from 350 to 800 nm of LaBr3∶Ce,Sr crystals with different Sr2+ doping concentrations. Compared with LaBr3∶Ce crystals, transmittance of 0.3% and 0.5% Sr2+doped LaBr3∶Ce crystals decrease. In addition, with the increase of Sr2+doping concentration, the energy resolution of the crystal increases correspondingly. LaBr3∶Ce,0.5%Sr crystal has the highest energy resolution of 2.99%@662 keV. The energy resolution of the encapsulated LaBr3∶Ce,0.5%Sr crystal with size of ϕ25 mm×25 mm is 2.93%@662 keV.

Key words: scintillation crystal, LaBr3∶Ce,Sr, vertical Bridgman method, X-ray excited emission spectra, energy resolution, encapsulation

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