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Œ€‹†¬‰Κ(02-11)

2018”N

™Žγ”­•\

1.       Matsumoto Tetsuro, Masuda Akihiko, Harano Hideki, Shikaze Yoshiaki, Tanimura Yoshihiko, Seito Hajime, Kurashima Satoshi, Nishino Sho, Yoshitomi Hiroshi, Nishiyama Jun, Hagiwara Masayuki, Unno Yasuhiro, Yoshizawa Michio, Development of the high-energy neutron fluence rate standard field in Japan with a peak energy of 45 MeV using the Li-7(p,n)Be-7 reaction at TIARA, JOURNAL OF NUCLEAR SCIENCE AND TECHNOLOGY 54(5), 529-538 (2017).

2.       Masuda Akihiko, Matsumoto Tetsuro, Iwamoto Yosuke, Hagiwara Masayuki, Satoh Daiki, Sato Tatsuhiko, Iwase Hiroshi, Yashima Hiroshi, Nakane Yoshihiro, Nishiyama Jun, Shima Tatsushi, Tamii Atsushi, Hatanaka Kichiji, Harano Hideki, Nakamura Takashi , Applicability of the two-angle differential method to response measurement of neutron-sensitive devices at the RCNP high-energy neutron facility, NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT 849, 94-101 (2017)

2.       Masuda Akihiko, Matsumoto Tetsuro, Takada Kenta, Onishi Takahiro, Kotaki Kohei, Sugimoto Hidenori, Kumada Hiroaki, Harano Hideki, Sakae Takeji , Neutron spectral fluence measurements using a Bonner sphere spectrometer in the development of the iBNCT accelerator-based neutron source, APPLIED RADIATION AND ISOTOPES 127, 47-51 (2017)

™Œϋ“ͺ”­•\

1.       T. Matsumoto, A. Masuda, J. Hori, T. Sano, H. Harano, Development of a Neutron Detection System using an LGB Scintillator for Precise Measurements of Epi-Thermal Neutrons, 2018IEEE NSS-MIC, 2018.11.

2.       Ό–{@“N˜YA‘“c–Ύ•FAŒ΄–μ‰pŽχA‘q“‡rA45 MeV’†«Žq‚Ι‘Ξ‚·‚鐅‘f‚Μ’e«ŽU—”½‰ž‘Š‘ΞŠp“x•ͺ•z‚ΜŽΐŒ±“IŒŸΨA“ϊ–{Œ΄Žq—ΝŠw‰ο2018”NH‚Μ‘ε‰οA2018.9.

3.       Akihiko Masuda, Tetsuro Matsumoto, Hiroaki Kumada, Kenta Takada, Jun-ichi Hori, Yoshinori Sakurai, Tadafumi Sano, Hideki Harano, Takeji Sakae, Demonstration of BSS unfolding method for BNCT neutron field and development of new BSS using Li-glass scintillators coupled with current-mode-operated PMTs for intense neutron field, 2018 IEEE Nuclear Science Symposium and Medical Imaging Conference, 2018.11.

4.       ‘“c –Ύ•FAΌ–{ “N˜YAŒF“c ”Ž–ΎA‚“c Œ’‘ΎA–x ‡ˆκAŸNˆδ —ΗŒ›A²–μ ’‰ŽjAŒ΄–μ ‰pŽχAžΔ •“ρA‰Α‘¬Šν‘ε‹­“x’†«ŽqŒΉ—pƒ{ƒi[‹…ƒXƒyƒNƒgƒƒ[ƒ^[‚ΜŠJ”­‚Ζ“Α«•]‰ΏA2018”N ‘ζ79‰ρ‰ž—p•¨—Šw‰οH‹GŠwpu‰‰‰οA2018.9.

5.       ‘“c@–Ύ•FA’†«Žq•W€‹Zp‚Μ‰ž—pŒ€‹†i‚ƒGƒlƒ‹ƒM[’†«ŽqABNCTjA‘ζ69‰ρ •ϊŽΛόŒv‘ͺŒ€‹†‰οA2018.7.

™’†«Žq•W€‚Μƒƒ“ƒo[‚ͺ‹€’˜‚Μ˜_•Ά‚ΖŒϋ“ͺ”­•\

2015”N

˜_•Ά

1.       Takada Masashi, Matsumoto Tetsuro, Masuda Akihiko, Nunomiya Tomoya, Aoyama Kei, Nakamura Takashi, SIMULATED 8 MeV NEUTRON RESPONSE FUNCTIONS OF A THIN SILICON NEUTRON SENSOR, RADIATION PROTECTION DOSIMETRY 180(1-4), 372-376 (2018).

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