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AbstractAbstract
[en] The authors theoretically examined the β decay of neutron-rich nuclei with a magic number and semi-magic number, using a proton-neutron random phase approximation method. The tensor force previously believed to have a significant impact on the development of the structure of unstable nuclei was found to potentially have an impact on β decay, too. This paper introduces how β decay half-life is reproduced by the tensor force, with a focus on its microscopic mechanism. It was found that the tensor force plays an important role in the β decay of "3"4Si, "6"8","7"8Ni, and "1"3"2Sn. Although the calculation of Gamow-Teller transition (GT transition) leaves room for theoretical confirmation, it is clear that the tensor force has a large impact on the 1+ excited state of GT transition. Therefore, for the reliable prediction of the β decay half-life of unknown nuclei, it is necessary to take into account the impact of tensor force. β decay, along with the mass, radius, and excited state, is one of the characteristics possessed by unstable nuclei, and it is important to increase the knowledge of nuclear structure theory so as to be able to systematically predict the probability of β decay. (A.O.)
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Source
20 refs., 3 figs., 1 tab.
Record Type
Journal Article
Journal
Genshikaku Kenkyu; ISSN 0367-4169;
; v. 60(2); p. 25-36

Country of publication
APPROXIMATIONS, BETA DECAY RADIOISOTOPES, BETA-MINUS DECAY RADIOISOTOPES, CALCULATION METHODS, DECAY, ENERGY LEVELS, EVEN-EVEN NUCLEI, INTERMEDIATE MASS NUCLEI, ISOTOPES, LIGHT NUCLEI, NICKEL ISOTOPES, NUCLEAR DECAY, NUCLEI, RADIOISOTOPES, SECONDS LIVING RADIOISOTOPES, SILICON ISOTOPES, TIN ISOTOPES
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