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Van Beveren, C.*; Andreyev, A. N.; Barzakh, A. E.*; Cocolios, T. E.*; de Groote, R. P.*; Fedorov, D.*; Fedosseev, V. N.*; Ferrer, R.*; Ghys, L.*; Huyse, M.*; et al.
Journal of Physics G; Nuclear and Particle Physics, 43(2), p.025102_1 - 025102_22, 2016/02
被引用回数:11 パーセンタイル:62.88(Physics, Nuclear)-decay spectroscopy of Tl has been performed at the CERN isotope separator on-line (ISOLDE) facility. New fine-structure decays have been observed for both isotopes. -decay branching ratios of 0.089(19), 0.047(6) and 1.22(30) have been deduced for the (10), (7) and (2) states respectively in Tl and a lower limit of 0.49 for the -decay branching ratio of Tl. A new half-life of 9.5(2) s for the (2) state in Tl and 1.9(1) s for the low-spin state in Tl has been deduced. Using - coincidence analysis, multiple rays were observed de-exciting levels in Au fed by Tl decays. The transitions connecting these low-lying states in Au are essential to sort the data and possibly identify bands from inbeam studies in these isotopes. Owing to the complex fine-structure decays and limited knowledge about the structure of the daughter nuclei, only partial level schemes could be constructed for both gold isotopes in the present work. Reduced -decay widths have been calculated and are compared with values obtained in neighboring odd-A and even-A thallium isotopes. Except for the allowed decay of the Tl (10) state, the other fine-structure decays observed in this study are hindered. This points to strong structural changes between parent thallium and daughter gold isotopes.
浅井 雅人; Heberger, F. P.*; Lopez-Martens, A.*
Nuclear Physics A, 944, p.308 - 332, 2015/12
被引用回数:54 パーセンタイル:95.62(Physics, Nuclear)崩壊核分光による原子番号100から109までの原子核の核構造研究についてレビューした。崩壊核分光に関わる分離技術やデジタルエレクトロニクスの利用、線スペクトルにおけるサム効果などの実験技術や実験手法について詳しく記述した。実験結果や物理の議論については、ここ10年間に最も進展のあった、原子番号が偶数で中性子数151, 153, 155を持つ一連の原子核の核構造の系統性に特に焦点を絞って紹介した。
加治 大哉*; 森本 幸司*; 若林 泰生*; 武山 美麗*; 浅井 雅人
JPS Conference Proceedings (Internet), 6, p.030106_1 - 030106_4, 2015/06
超重核の-(X線)核分光実験を行うため、ガス充填型反跳イオン分離装置GARISの焦点面に新たにSi-Ge検出器アレイを導入した。このアレイの性能をPb(Ca,2n)No反応およびPb(Ca,xn)No [x=1,2,3]反応を用いて試験した。線との同時計数測定によりNoとNoの崩壊に伴う線を明瞭に観測することに成功した。