TY - JOUR
T1 - Growth of Eu:SrI2bulk crystals and their scintillation properties
AU - Yokota, Yuui
AU - Kurosawa, Shunsuke
AU - Nishimoto, Kei
AU - Kamada, Kei
AU - Yoshikawa, Akira
N1 - Publisher Copyright:
© 2014 Elsevier B.V.
PY - 2014/9/1
Y1 - 2014/9/1
N2 - Eu doped SrI2[Eu:SrI2] bulk single crystals with 1 in. diameter were grown using a special-shaped carbon crucible and a modified micro-pulling-down furnace and their scintillation properties were investigated. As-grown Eu:SrI2bulk crystals indicated high transparency while they included several cracks in the crystals. Grown crystals indicated a single phase of SrI2structure in the powder X-ray diffraction measurement. In the X-ray radioluminescence spectrum, there was a sharp emission peak around 435 nm which originated from 5d-4f transition of Eu2+ion. Light yields of Eu5% and 7.5%:SrI2crystals under γ-ray irradiation from 137Cs radiation source were 83,000 and 85,000 ph/MeV, respectively. Their decay times under γ-ray irradiation were approximately 2 μs.
AB - Eu doped SrI2[Eu:SrI2] bulk single crystals with 1 in. diameter were grown using a special-shaped carbon crucible and a modified micro-pulling-down furnace and their scintillation properties were investigated. As-grown Eu:SrI2bulk crystals indicated high transparency while they included several cracks in the crystals. Grown crystals indicated a single phase of SrI2structure in the powder X-ray diffraction measurement. In the X-ray radioluminescence spectrum, there was a sharp emission peak around 435 nm which originated from 5d-4f transition of Eu2+ion. Light yields of Eu5% and 7.5%:SrI2crystals under γ-ray irradiation from 137Cs radiation source were 83,000 and 85,000 ph/MeV, respectively. Their decay times under γ-ray irradiation were approximately 2 μs.
KW - A2. Growth from melt
KW - B1. Halides
KW - B2. Scintillator materials
KW - B3. Scintillators
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U2 - 10.1016/j.jcrysgro.2014.02.031
DO - 10.1016/j.jcrysgro.2014.02.031
M3 - Article
AN - SCOPUS:84906960647
SN - 0022-0248
VL - 401
SP - 343
EP - 346
JO - Journal of Crystal Growth
JF - Journal of Crystal Growth
ER -