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論文

New $$beta$$-decaying state in $$^{214}$$Bi

Andel, B.*; Van Duppen, P.*; Andreyev, A. N.; Blazhev, A.*; Grawe, H.*; Lica, R.*; Na$"i$dja, H.*; Stryjczyk, M.*; 他52名*

Physical Review C, 104(5), p.054301_1 - 054301_13, 2021/11

 被引用回数:1 パーセンタイル:18.91(Physics, Nuclear)

A new $$beta$$-decaying state in $$^{214}$$Bi has been identified at the ISOLDE Decay Station at the CERN-ISOLDE facility. A preferred $$I^{pi} = (8^{-})$$ assignment was suggested for this state based on the $$beta$$-decay feeding pattern to levels in $$^{214}$$Po and shell-model calculations. The half-life of the $$I^{pi} = (8^{-})$$ state was deduced to be $$T_{1/2} = 9.39 (10)$$ min. The deexcitation of the levels populated in $$^{214}$$Po by the $$beta$$ decay of this state was investigated via $$gamma-gamma$$ coincidences and a number of new levels and transitions were identified. Shell-model calculations for excited states in $$^{214}$$Bi and $$^{214}$$Po were performed using two different effective interactions: the H208 and the modified Kuo-Herling particle interaction. Both calculations agree on the interpretation of the new $$beta$$-decaying state as an $$I^{pi} = 8^{-}$$ isomer and allow for the tentative assignment of shell-model states to several high-spin states in $$^{214}$$Po.

論文

Decay studies of the long-lived states in $$^{186}$$Tl

Stryjczyk, M.*; Andel, B.*; Andreyev, A. N.; Cubiss, J.*; Pakarinen, J.*; 他43名*

Physical Review C, 102(2), p.024322_1 - 024322_9, 2020/08

 被引用回数:4 パーセンタイル:45.12(Physics, Nuclear)

Decay spectroscopy of the long-lived states in $$^{186}$$Tl has been performed at ISOLDE, CERN. The $$alpha$$ decay from the low-spin (2$$^{-}$$) state in $$^{186}$$Tl was observed for the first time and a half-life was determined. Based on the $$alpha$$-decay energy, the relative positions of the long-lived states were fixed, with the (2$$^{-}$$) state as the ground state, the 7$$^{(+)}$$ state at 77(56) keV, and the 10$$^{(-)}$$ state at 451(56) keV. The level scheme of the internal decay of the $$^{186}$$Tl(10$$^{(-)}$$) state, which was known to decay solely through emission of 374-keV $$gamma$$-ray transition, was extended and a lower limit for the $$beta$$-decay branching b$$_{beta}$$ $$>$$ 5.9(3)% was determined. The extracted retardation factors for the $$gamma$$ decay of the 10$$^{(-)}$$ state were compared to the available data in neighboring odd-odd thallium isotopes indicating the importance of the $$pi$$d$$_{3/2}$$ shell in the isomeric decay and significant structure differences between $$^{184}$$Tl and $$^{186}$$Tl.

論文

Fine structure in the $$alpha$$ decay of $$^{218}$$At

Cubiss, J. G.*; Andreyev, A. N.; Barzakh, A. E.*; Andel, B.*; Antalic, S.*; Cocolios, T. E.*; Day Goodacre, T.*; Fedorov, D. V.*; Fedosseev, V. N.*; Ferrer, R.*; et al.

Physical Review C, 99(6), p.064317_1 - 064317_6, 2019/06

 被引用回数:6 パーセンタイル:53.97(Physics, Nuclear)

$$^{218}$$Atの$$alpha$$崩壊について、CERN-ISOLDE施設においてレーザーイオン化法を使うことで研究した。$$alpha$$-$$gamma$$同時計数データを初めて取得し、より精度の良い半減期の値として1.27(6)秒を得た。$$alpha$$崩壊の微細構造を基に新しい$$alpha$$崩壊図式を構築した。それらの結果から、$$^{218}$$Atの基底状態のスピン・パリティは(3$$^{-}$$)がより確からしいことが解ったが、(2)$$^{-}$$の可能性も完全には否定しきれない。

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