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Evaluation of scintillation properties of α- and β-SiAlON phosphors under focused microbeam irradiation using ion-beam-induced luminescence analysis (CROSBI ID 278026)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Kada, Wataru ; Sudić, Ivan ; Skukan, Natko ; Kawabata, Shunsuke ; Satoh, Takahiro ; Susaki, Junichi ; Yamada, Suzuya ; Sekine, Takahiro ; Kumar Parajuli, Raj ; Sakai, Makoto et al. Evaluation of scintillation properties of α- and β-SiAlON phosphors under focused microbeam irradiation using ion-beam-induced luminescence analysis // Nuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms, 450 (2019), 157-162. doi: 10.1016/j.nimb.2018.09.002

Podaci o odgovornosti

Kada, Wataru ; Sudić, Ivan ; Skukan, Natko ; Kawabata, Shunsuke ; Satoh, Takahiro ; Susaki, Junichi ; Yamada, Suzuya ; Sekine, Takahiro ; Kumar Parajuli, Raj ; Sakai, Makoto ; Miura, Kenta ; Koka, Masashi ; Yamada, Naoto ; Kamiya, Tomihiro ; Jakšić, Milko ; Hanaizumi, Osamu

engleski

Evaluation of scintillation properties of α- and β-SiAlON phosphors under focused microbeam irradiation using ion-beam-induced luminescence analysis

Two different types of SiAlON phosphors, namely, α- SiAlON:Eu and β-SiAlON:Eu, that have been developed as scintillators are evaluated for their luminescent properties by ion-beam-induced luminescence (IBIL) analysis under 2– 3-MeV H+-microbeam irradiation. The IBIL spectra show that both α-SiAlON:Eu and β-SiAlON:Eu have bright luminescence similar to that of ZnS:Ag scintillators. The α- SiAlON:Eu and β-SiAlON:Eu IBIL spectra have peaks at wavelengths of 605 and 540 nm, respectively, which lie in the preferred range of general optical sensors. As the irradiation progresses, the IBIL intensity of conventional ZnS:Ag scintillators decreases sharply, whereas that of the two SiAlONs remains largely unchanged. Moreover, the thermal resistivity of β-SiAlON:Eu is measured by IBIL under temperature control. The IBIL intensity retains half of its original value at the highest temperature of 773 K. The present experimental results reveal the two different types of SiAlON to be potential candidates for a scintillation monitoring tool for harsh environments in which intense beam irradiation at high temperature can be expected.

IBIL ; SiAlON ; Continuous measurement ; Temperature control ; Thermal resistivity

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Podaci o izdanju

450

2019.

157-162

objavljeno

0168-583X

1872-9584

10.1016/j.nimb.2018.09.002

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Fizika

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