Superallowed Gamow–Teller decay of the doubly magic nucleus 100Sn

被引:0
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作者
C. B. Hinke
M. Böhmer
P. Boutachkov
T. Faestermann
H. Geissel
J. Gerl
R. Gernhäuser
M. Górska
A. Gottardo
H. Grawe
J. L. Grębosz
R. Krücken
N. Kurz
Z. Liu
L. Maier
F. Nowacki
S. Pietri
Zs. Podolyák
K. Sieja
K. Steiger
K. Straub
H. Weick
H.-J. Wollersheim
P. J. Woods
N. Al-Dahan
N. Alkhomashi
A. Ataç
A. Blazhev
N. F. Braun
I. T. Čeliković
T. Davinson
I. Dillmann
C. Domingo-Pardo
P. C. Doornenbal
G. de France
G. F. Farrelly
F. Farinon
N. Goel
T. C. Habermann
R. Hoischen
R. Janik
M. Karny
A. Kaşkaş
I. M. Kojouharov
Th. Kröll
Y. Litvinov
S. Myalski
F. Nebel
S. Nishimura
C. Nociforo
机构
[1] Technische Universität München,Physik Department E12
[2] D-85748 Garching,Department of Physics
[3] Germany,Physics Department
[4] GSI Helmholtzzentrum für Schwerionenforschung GmbH,Department of Physics & Astronomy
[5] D-64291 Darmstadt,Departamento de Fisica i Enginyeria Nuclear
[6] Germany ,undefined
[7] Istituto Nazionale di Fisica Nucleare,undefined
[8] Laboratori Nazionali di Legnaro,undefined
[9] 35020 Legnaro,undefined
[10] Italy ,undefined
[11] The Henryk Niewodniczanski Institute of Nuclear Physics (IFJ PAN),undefined
[12] 31-342 Krakow,undefined
[13] Poland ,undefined
[14] TRIUMF,undefined
[15] Vancouver,undefined
[16] British Columbia V6T 2A3,undefined
[17] Canada ,undefined
[18] School of Physics & Astronomy,undefined
[19] The University of Edinburgh,undefined
[20] Edinburgh EH9 3JZ,undefined
[21] UK ,undefined
[22] Université de Strasbourg,undefined
[23] IPHC,undefined
[24] 67037 Strasbourg Cedex,undefined
[25] France ,undefined
[26] University of Surrey,undefined
[27] Guildford GU2 7XH,undefined
[28] UK,undefined
[29] Faculty of Science,undefined
[30] Ankara University,undefined
[31] 06100 Tandogan,undefined
[32] Ankara,undefined
[33] Turkey,undefined
[34] Institute of Nuclear Physics,undefined
[35] University of Cologne,undefined
[36] D-50937 Köln,undefined
[37] Germany ,undefined
[38] Institute Vinca,undefined
[39] University of Belgrade,undefined
[40] 11000 Belgrade,undefined
[41] Serbia ,undefined
[42] IFIC,undefined
[43] CSIC-University of Valencia,undefined
[44] E-46071 Valencia,undefined
[45] Spain ,undefined
[46] RIKEN Nishina Center,undefined
[47] Wako,undefined
[48] Saitama 351-0198,undefined
[49] Japan ,undefined
[50] Grand Accélérateur National d’Ions Lourds,undefined
来源
Nature | 2012年 / 486卷
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摘要
The shell structure of atomic nuclei is associated with ‘magic numbers’ and originates in the nearly independent motion of neutrons and protons in a mean potential generated by all nucleons. During β+-decay, a proton transforms into a neutron in a previously not fully occupied orbital, emitting a positron–neutrino pair with either parallel or antiparallel spins, in a Gamow–Teller or Fermi transition, respectively. The transition probability, or strength, of a Gamow–Teller transition depends sensitively on the underlying shell structure and is usually distributed among many states in the neighbouring nucleus. Here we report measurements of the half-life and decay energy for the decay of 100Sn, the heaviest doubly magic nucleus with equal numbers of protons and neutrons. In the β-decay of 100Sn, a large fraction of the strength is observable because of the large decay energy. We determine the largest Gamow–Teller strength so far measured in allowed nuclear β-decay, establishing the ‘superallowed’ nature of this Gamow–Teller transition. The large strength and the low-energy states in the daughter nucleus, 100In, are well reproduced by modern, large-scale shell model calculations.
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页码:341 / 345
页数:4
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