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-decay study of
TlVan 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:12 パーセンタイル:60.60(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.
) intruder state in
TlVan Beveren, C.*; Andreyev, A. N.; Barzakh, A.*; Cocolios, T. E.*; Fedorov, D.*; Fedosseev, V. N.*; Ferrer, R.*; Huyse, M.*; K
ster, U.*; Lane, J. F. W.*; et al.
Physical Review C, 92(1), p.014325_1 - 014325_8, 2015/07
被引用回数:9 パーセンタイル:50.25(Physics, Nuclear)Decay spectroscopy of
Tl has been performed at the CERN Isotope Separator On-Line (ISOLDE) facility. An excitation energy of 506.1(1) keV and a half-life of 47.1(7) ms of the intruder based (10
) state have been extracted. The internal decay characteristics of this state are determined and discussed, extending the systematics of such states in the even-mass thallium nuclei below neutron midshell at N = 104. The retardation factors of the isomeric M2 and E3 transitions are deduced and compared with retardation factors in neighboring odd-mass and even-mass thallium isotopes. The new information is combined with a review of hindered and unhindered
-decay data of
Bi populating levels in daughter nuclei
Tl and supports the interpretation of the intruder character of the (10
) state in
Tl.