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Large-basis shell-model calculation of the10C→10BFermi matrix element

Authors :
W. E. Ormand
Petr Navratil
Bruce R. Barrett
Source :
Physical Review C. 56:2542-2548
Publication Year :
1997
Publisher :
American Physical Society (APS), 1997.

Abstract

We use a 4{h_bar}{Omega} shell-model calculation with a two-body effective interaction derived microscopically from the Reid93 potential to calculate the isospin-mixing correction for the {sup 10}C{r_arrow}{sup 10}B superallowed Fermi transition. The effective interaction takes into account the Coulomb potential as well as the charge dependence of T=1 partial waves. Our results suggest the isospin-mixing correction {delta}{sub C}{approx}0.1{percent}, which is compatible with previous calculations. The correction obtained in those calculations, performed in a 0{h_bar}{Omega} space, was dominated by deviation from unity of the radial overlap between the converted proton and the corresponding neutron. In the present calculation this effect is accommodated by the large model space. The obtained {delta}{sub C} correction is about a factor of 4 too small to obtain unitarity of the Cabibbo-Kobayashi-Maskawa matrix with the present experimental data. {copyright} {ital 1997} {ital The American Physical Society}

Details

ISSN :
1089490X and 05562813
Volume :
56
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi...........aec0661dec71422d2992a76f3d6e6f31
Full Text :
https://doi.org/10.1103/physrevc.56.2542