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論文

Decay modes of the 9/2$$^-$$ isomeric state in $$^{183}$$Tl

Venhart, M.*; Andreyev, A. N.; Cubiss, J. G.*; Wood, J. L.*; Barzakh, A. E.*; Van Beveren, C.*; Cocolios, T. E.*; de Groote, R. P.*; 他19名*

Physical Review C, 105(3), p.034338_1 - 034338_9, 2022/03

 被引用回数:1 パーセンタイル:34.54(Physics, Nuclear)

The neutron-deficient region of isotopes around $$Z$$=82 is the best studied example of low-energy shape coexistence in nuclei. In this work, the internal transition decay and $$alpha$$ decay of the 53.3-ms isomeric state in $$^{183}$$Tl were studied at ISOLDE, CERN. The branching for the internal decay was measured to be 98.5(4)%, while the much weaker $$alpha$$decay branching is only about 1.4(4)%. The new results include the first identification of an $$E3$$ transition feeding the 3/2$$^+$$ excited state in $$^{183}$$Tl. Three $$alpha$$ decays from the $$^{183m}$$Tl isomer were also oserved, and revealed the population of a candidate 9/2$$^-$$ state in $$^{179}$$Au which has been linked to shape coexistence in the Au nuclei. It is expected that similarly weak $$alpha$$ decays from isomeric states may be found also in neighbouring Tl isotopes.

論文

Nuclear moments of the low-lying isomeric $$1^+$$ state of $$^{34}$$Al; Investigation on the neutron $$1p1h$$ excitation across $$N=20$$ in the island of inversion

Xu, Z. Y.*; Heylen, H.*; 旭 耕一郎*; Boulay, F.*; Daugas, J. M.*; de Groote, R. P.*; Gins, W.*; Kamalou, O.*; Koszor$'u$s, $'A$.*; Lykiardopoupou, M.*; et al.

Physics Letters B, 782, p.619 - 626, 2018/07

AA2018-0159.pdf:0.5MB

 被引用回数:7 パーセンタイル:53.93(Astronomy & Astrophysics)

GANIL研究所において、$$^{36}$$Sからのフラグメンテーション反応によって中性子過剰核$$^{34}$$Alにおける核異性体である$$1^+$$状態を生成し、その磁気双極子モーメントと電気的四重極モーメント(Qモーメント)をそれぞれ$$beta$$-NMR法および$$beta$$-NQR法を用いて測定した。この状態は中性子数20の殻ギャップを越えて励起したものであり、その性質を実験的に押さえることは、この原子核の周辺で知られている逆転の島(基底状態で既に殻ギャップを越えた励起が起こるとされる原子核の一団)の発現のメカニズムを解明するための有益な情報を与える。測定されたg因子の絶対値は$$1.757pm 0.014$$、Qモーメントの絶対値は38(5)mbとなった。これらの値は、大規模殻模型計算による予言値に近く、模型の高い記述能力を確かめることができた。

論文

Changes in mean-squared charge radii and magnetic moments of $$^{179-184}$$Tl measured by in-source laser spectroscopy

Barzakh, A.*; Andreyev, A. N.; Cocolios, T. E.*; de Groote, R. P.*; Fedorov, D. V.*; Fedosseev, V. N.*; Ferrer, R.*; Fink, D. A.*; Ghys, L.*; Huyse, M.*; et al.

Physical Review C, 95(1), p.014324_1 - 014324_12, 2017/01

 被引用回数:22 パーセンタイル:86.87(Physics, Nuclear)

Hyperfine structure and isotope shifts have been measured for the ground and isomeric states in the neutron deficient isotopes $$^{179-184}$$Tl using the 276.9 nm transition. The experiment has been performed at the CERN Isotope Separator On-Line facility using the in-source resonance-ionization laser spectroscopy technique. Spins for the ground states in $$^{179,181,183}$$Tl have been determined as $$I$$ = 1/2. Magnetic moments and changes in the nuclear mean-square charge radii have been deduced. By applying the additivity relation for magnetic moments of the odd-odd Tl nuclei the leading configuration assignments were confirmed. A deviation of magnetic moments for isomeric states in $$^{182,184}$$Tl from the trend of the heavier Tl nuclei is observed. The charge radii of the ground states of the isotopes $$^{179-184}$$Tl follow the trend for isotonic (spherical) lead nuclei. The noticeable difference in charge radii for ground and isomeric states of $$^{183,184}$$Tl has been observed, suggesting a larger deformation for the intruder-based 9/2$$^{-}$$ and 10$$^{-}$$ states compared to the ground states. An unexpected growth of the isomer shift for $$^{183}$$Tl has been found.

論文

$$alpha$$-decay study of $$^{182,184}$$Tl

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:63.46(Physics, Nuclear)

$$alpha$$-decay spectroscopy of $$^{182,184}$$Tl has been performed at the CERN isotope separator on-line (ISOLDE) facility. New fine-structure $$alpha$$ decays have been observed for both isotopes. $$alpha$$-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 $$^{184}$$Tl and a lower limit of 0.49$$%$$ for the $$alpha$$-decay branching ratio of $$^{182}$$Tl. A new half-life of 9.5(2) s for the (2$$^{-}$$) state in $$^{184}$$Tl and 1.9(1) s for the low-spin state in $$^{182}$$Tl has been deduced. Using $$alpha$$-$$gamma$$ coincidence analysis, multiple $$gamma$$ rays were observed de-exciting levels in $$^{178,180}$$Au fed by $$^{182,184}$$Tl $$alpha$$ decays. The $$gamma$$ transitions connecting these low-lying states in $$^{178,180}$$Au are essential to sort the data and possibly identify bands from inbeam studies in these isotopes. Owing to the complex fine-structure $$alpha$$ 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 $$alpha$$-decay widths have been calculated and are compared with values obtained in neighboring odd-A and even-A thallium isotopes. Except for the allowed $$alpha$$ decay of the $$^{184}$$Tl (10$$^{-}$$) state, the other fine-structure $$alpha$$ decays observed in this study are hindered. This points to strong structural changes between parent thallium and daughter gold isotopes.

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