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Magnetic Dipole Transition in Ca48...

by Bijaya Acharya, Baishan Hu, Gaute Hagen, Thomas F Papenbrock
Publication Type
Journal
Journal Name
Physical Review Letters
Publication Date
Page Number
232504
Volume
132
Issue
23

The magnetic dipole transition strength 𝐵⁡(𝑀⁢1) of 48Ca is dominated by a single resonant state at an excitation energy of 10.23 MeV. Experiments disagree about 𝐵⁡(𝑀⁢1) and this impacts our understanding of spin flips in nuclei. We performed ab initio computations based on chiral effective field theory and found that 𝐵⁡(𝑀⁢1:  0+→1+) lies in the range from 7.0 to 10.2  𝜇2
𝑁. This is consistent with a (𝛾,𝑛) experiment but larger than results from (𝑒,𝑒′) and (𝑝,𝑝′) scattering. Two-body currents yield no quenching of the 𝐵⁡(𝑀⁢1) strength and continuum effects reduce it by about 10%. For a validation of our approach, we computed magnetic moments in 47,49Ca and performed benchmark calculations in light nuclei.