Microscopic calculations of isospin-breaking corrections to superallowed beta-decay
Nuclear Theory
2011-04-05 v2
Abstract
The superallowed beta-decay rates that provide stringent constraints on physics beyond the Standard Model of particle physics are affected by nuclear structure effects through isospin-breaking corrections. The self-consistent isospin- and angular-momentum-projected nuclear density functional theory is used for the first time to compute those corrections for a number of Fermi transitions in nuclei from A=10 to A=74. The resulting leading element of the CKM matrix, |V_{ud}|= 0.97447(23), agrees well with the recent result by Towner and Hardy [Phys. Rev. C {\bf 77}, 025501 (2008)].
Keywords
Cite
@article{arxiv.1101.0939,
title = {Microscopic calculations of isospin-breaking corrections to superallowed beta-decay},
author = {W. Satula and J. Dobaczewski and W. Nazarewicz and M. Rafalski},
journal= {arXiv preprint arXiv:1101.0939},
year = {2011}
}
Comments
4 pages, 2 figures; replaced with accepted version