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南 晶子*; 松野 治貴*; 森田 恭平*; 松木 麟太朗*; 小手川 恒*; 播磨 尚朝*; 芳賀 芳範; 山本 悦嗣; 大貫 惇睦*; 藤 秀樹*
Journal of the Physical Society of Japan, 95(7), p.074711_1 - 074711_11, 2026/07
We performed
Be-NMR measurements on UBe
to probe its superconducting state. The Knight shift behavior indicates spin-triplet pairing with anisotropic spin susceptibility reduction below
, providing strong evidence for a triplet state. The
data support a multiband, fully gapped model, and symmetry analysis suggests an
order parameter, consistent with a fully gapped spin-triplet topological superconductor.
山野 秀将; 松場 賢一; 佐々 京平*; 木下 円機*; 守田 幸路*; 齊藤 泰司*; 伊藤 啓*; 鈴木 徹*
第30回動力・エネルギー技術シンポジウム講演論文集(インターネット), 5 Pages, 2026/06
A research project on severe accidents of oxide-fueled core has been started since 2024 as research and development in a conceptual design stage of demonstration sodium-cooled fast reactors in Japan. It is necessary to develop analytical methodologies and technical bases to confirm the effectiveness of various design measures, which are introduced to the demonstration reactor in order to achieve recriticality elimination and in-vessel retention. The project implements element testing, integral testing, analytical methodology development and reactor application analyses, in which involved are important phenomena of fuel discharge behavior, core residual fuel coolability, and debris-bed formation behavior and coolability. This paper describes the project overview and progress until 2025.
Be-NMR spin-lattice relaxation rate in heavy-fermion superconductor UBe
森田 恭平*; 原 悠大*; 坂野 準哉*; 小手川 恒*; 藤 秀樹*; 芳賀 芳範; 大貫 惇睦
Journal of the Physical Society of Japan, 80(Suppl.A), p.SA099_1 - SA099_3, 2011/07
被引用回数:2 パーセンタイル:19.05(Physics, Multidisciplinary)Nuclear magnetic resonance (NMR) measurements have been carried out for a single crystal UBe
superconductor. In the normal state above the superconducting transition temperature, the nuclear spin-lattice relaxation rate obey
, suggesting the antiferromagnetic spin fluctuation which might be responsible for the unconventional superconductivity.