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郷 慎太郎*; 井手口 栄治*; 横山 輪*; 青井 考*; Azaiez, F.*; 古高 和禎; 初川 雄一; 木村 敦; 木佐森 慶一*; 小林 幹*; et al.
Physical Review C, 103(3), p.034327_1 - 034327_8, 2021/03
被引用回数:4 パーセンタイル:57.13(Physics, Nuclear)Excited states in S were investigated by in-beam -ray spectroscopy using the Mg(O, 21) fusion-evaporation reaction. The de-exciting -rays were measured with germanium detector arrays along with the measurement of evaporated charged particles in a segmented Si detector array. The level scheme was extended up to 12470 keV. The obtained level structure is compared with the large-scale shell-model calculations. The possibility of isoscalar-pair excited states is discussed for states with comparison between the experimental and theoretical results.
Strasser, P.*; 阿部 充志*; 青木 正治*; Choi, S.*; 深尾 祥紀*; 東 芳隆*; 樋口 嵩*; 飯沼 裕美*; 池戸 豊*; 石田 勝彦*; et al.
EPJ Web of Conferences, 198, p.00003_1 - 00003_8, 2019/01
被引用回数:13 パーセンタイル:99.06(Quantum Science & Technology)High precision measurements of the ground state hyperfine structure (HFS) of muonium is a stringent tool for testing bound-state quantum electrodynamics (QED) theory, determining fundamental constants of the muon magnetic moment and mass, and searches for new physics. Muonium is the most suitable system to test QED because both theoretical and experimental values can be precisely determined. Previous measurements were performed decades ago at LAMPF with uncertainties mostly dominated by statistical errors. At the J-PARC Muon Science Facility (MUSE), the MuSEUM collaboration is planning complementary measurements of muonium HFS both at zero and high magnetic field. The new high-intensity muon beam that will soon be available at H-Line will provide an opportunity to improve the precision of these measurements by one order of magnitude. An overview of the different aspects of these new muonium HFS measurements, the current status of the preparation for high-field measurements, and the latest results at zero field are presented.
Strasser, P.*; 青木 正治*; 深尾 祥紀*; 東 芳隆*; 樋口 嵩*; 飯沼 裕美*; 池戸 豊*; 石田 勝彦*; 伊藤 孝; 岩崎 雅彦*; et al.
Hyperfine Interactions, 237(1), p.124_1 - 124_9, 2016/12
被引用回数:7 パーセンタイル:90.97(Physics, Atomic, Molecular & Chemical)At the Muon Science Facility (MUSE) of J-PARC (Japan Proton Accelerator Research Complex), the MuSEUM collaboration is planning new measurements of the ground state hyperfine structure (HFS) of muonium both at zero field and at high magnetic field. The previous measurements were performed both at LAMPF (Los Alamos Meson Physics Facility) with experimental uncertainties mostly dominated by statistical errors. The new high intensity muon beam that will soon be available at MUSE H-Line will provide an opportunity to improve the precision of these measurements by one order of magnitude. An overview of the different aspects of these new muonium HFS measurements, the current status of the preparation, and the results of a first commissioning test experiment at zero field are presented.
郷 慎太郎*; 井手口 栄治*; 横山 輪*; 小林 幹*; 木佐森 慶一*; 高木 基伸*; 宮 裕之*; 大田 晋輔*; 道正 新一郎*; 下浦 享*; et al.
JPS Conference Proceedings (Internet), 6, p.030005_1 - 030005_4, 2015/06
The high-spin states in S were investigated at Tandem-ALTO facility in Institut de Physique Nuclaire d'Orsay The Mg(O, 21n)S fusion evaporation reaction was used to populate high-spin states in S. The germanium -ray detector array ORGAM was employed to measure rays from high-spin states and charged particles evaporated from the compound nuclei were detected by a segmented silicon detector, Si-Ball. A level scheme for S was deduced based on the gamma-gamma-coincidence analysis and -ray angular correlation analysis. The half-life of the transition in the superdeformed band was estimated by measuring the residual Doppler shift. The deduced half-life shows the large collectivity of the band.
Quynh, T. M.*; 長澤 尚胤; 永井 大介*; 八木 敏明; 玉田 正男; 三友 宏志*
no journal, ,
ポリL乳酸(PLLA)/ポリD乳酸(PDLA)のブレンド体のステレオコンプレックス結晶(SC結晶)形成と放射線による橋かけ構造導入とを組合せることによるPLAの耐熱性と力学特性の向上について検討した。トリアリルイソシアヌレート(TAIC)を3%溶融混合して、放射線を50kGy照射することによって、70%以上のゲル化を実現できた。PLLA/PDLAブレンド体に放射線橋かけを導入した結果、DSC測定では、約100Cの再結晶化温度と約170C付近のホモポリマーの融点のピークがなくなることがわかり、熱機械特性では、ホモポリマーの融点以上である180Cでも不融化し、SC結晶の融点である220C以上でもゴム状材料として残ることを確認し、耐熱性が改善できた。また、PLLA/PDLAのブレンドに比較して、引っ張り強度が、1.5倍の45MPaまで改善できた。SC結晶形成と放射線橋かけ導入により熱的に安定で固い材料となることを見いだした。