Article ID Journal Published Year Pages File Type
1790916 Journal of Crystal Growth 2013 4 Pages PDF
Abstract

•Undoped and Eu:SrI2 single crystals with Eu 1%, 2%, 3%, 5% and 10% Eu concentrations were grown by the modified μ-PD method.•Their crystals with approximately 2 mm diameter and 2–3 cm length indicated high transparency.•Powder X-ray diffraction patterns of grown Eu:SrI2 crystals revealed that the Eu:SrI2 crystals had a single phase of SrI2 structure•In the X-ray radioluminescence spectrum of Eu:SrI2 crystal, the emission peak around 430 nm which was due to the 5d–4f transition of Eu2+ ion was observed.•The light yield of grown Eu:SrI2 crystals were 48,000, 70,000 and 70,000 ph/MeV for Eu:SrI2 crystals with Eu 1%, 5% and 10% concentrations, respectively.

Undoped and Eu doped SrI2 (Eu:SrI2) single crystals were grown by the modified micro-pulling-down (μ-PD) method and their scintillation properties were investigated. Undoped and Eu:SrI2 single crystals with Eu 1%, 2%, 3% and 5% concentrations were obtained by the modified μ-PD method with the removable chamber system and their crystals with approximately 2 mm diameter and 2–3 cm length indicated high transparency. Powder X-ray diffraction patterns of grown Eu:SrI2 crystals revealed that the Eu:SrI2 crystals had a single phase of SrI2 structure and similar lattice parameters regardless of Eu concentrations. In the X-ray radioluminescence spectrum of Eu:SrI2 crystal, the emission peak around 430 nm which was due to the 5d–4f transition of Eu2+ ion was observed. Light yields, energy resolutions and decay times of grown Eu:SrI2 crystals irradiated under γ-ray were evaluated.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Condensed Matter Physics
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