Magnetic dipole transition in $^{48}$Ca
Nuclear Theory
2024-06-11 v2 Nuclear Experiment
Abstract
The magnetic dipole transition strength of Ca is dominated by a single resonant state at an excitation energy of 10.23 MeV. Experiments disagree about and this impacts our understanding of spin flips in nuclei. We performed ab initio computations based on chiral effective field theory and found that lies in the range from to . This is consistent with a experiment but larger than results from and scattering. Two-body currents yield no quenching of the strength and continuum effects reduce it by about 10%. For a validation of our approach, we computed magnetic moments in Ca and performed benchmark calculations in light nuclei.
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Cite
@article{arxiv.2311.11438,
title = {Magnetic dipole transition in $^{48}$Ca},
author = {B. Acharya and B. S. Hu and S. Bacca and G. Hagen and P. Navrátil and T. Papenbrock},
journal= {arXiv preprint arXiv:2311.11438},
year = {2024}
}
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