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  1. 原著論文

Effects of Gamma-ray and Neutron Irradiation on Infrared Optical Properties of ZnSe and ZnS for ITER Divertor Thermography

https://repo.qst.go.jp/records/2001128
https://repo.qst.go.jp/records/2001128
f7c0523e-2b84-49f9-bba2-c747c303e93e
Item type 学術雑誌論文 / Journal Article(1)
公開日 2024-03-22
タイトル
タイトル Effects of Gamma-ray and Neutron Irradiation on Infrared Optical Properties of ZnSe and ZnS for ITER Divertor Thermography
言語 en
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言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_6501
資源タイプ journal article
著者 Ushiki Tomohiko

× Ushiki Tomohiko

Ushiki Tomohiko

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Imazawa Ryota

× Imazawa Ryota

Imazawa Ryota

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Kitazawa Sin-iti

× Kitazawa Sin-iti

Kitazawa Sin-iti

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Ishikawa Masao

× Ishikawa Masao

Ishikawa Masao

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Murakami Hidetoshi

× Murakami Hidetoshi

Murakami Hidetoshi

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Shimizu Kosuke

× Shimizu Kosuke

Shimizu Kosuke

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Sugie Tatsuo

× Sugie Tatsuo

Sugie Tatsuo

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Okazaki Hiroyuki

× Okazaki Hiroyuki

Okazaki Hiroyuki

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Masaya Seki

× Masaya Seki

Masaya Seki

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Buenavidez Butch

× Buenavidez Butch

Buenavidez Butch

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Kasano Naoto

× Kasano Naoto

Kasano Naoto

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Katayanagi Yuzi

× Katayanagi Yuzi

Katayanagi Yuzi

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Nunoya Yoshihiko

× Nunoya Yoshihiko

Nunoya Yoshihiko

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内容記述タイプ Abstract
内容記述 Gamma-ray and neutron irradiation tests were performed by using antireflective-coated and non-antireflective-coated samples of ZnSe and ZnS to examine the impact on their infrared optical properties. In neutron irradiation tests, ZnSe and ZnS samples showed minimal transmittance reduction even up to 1.44×10E16 n/cm2 (evaluated by dpa value, the values are 5.77×10E-6, 2.07×10E-5 for ZnSe and ZnS, respectively), about 5.8 times higher than the expected neutron fluence in ITER. Gamma irradiation at 100 kGy did not affect any of the samples, however, at 5.6 MGy (2.6x the expected dose of ITER), non-antireflective-coated ZnSe and ZnS exhibited induced absorption bands. Antireflective coating did partially mitigate this effect, but ZnS, even with antireflective coating, showed up to 2.5% degradation over the wide wavelength range of 1.5?4.5 μm, whereas ZnSe was less affected. Both ZnSe and ZnS exhibited a modest 2% absorption around 3 μm. Surface analysis by SEM, laser microscope, and XPS linked the 3-μm degradation to gamma-irradiation-induced Zn(OH)2 formation that was confined to the surface. Thus, transmittance degradation of ZnSe over the lifespan of ITER was estimated to be a maximum of approximately 7.8%. The practical use of ZnSe in the IRTh system requires further evaluation with Si and CaF2 lenses and for the optical design to be finalized. Nevertheless, these findings suggest that ZnSe is a promising candidate for the IRTh system’s lenses.
書誌情報 Journal of Nuclear Materials

発行日 2024-03
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