Suppressed Electric Quadrupole Collectivity in $^{49}$Ti
Abstract
Single-step Coulomb excitation of Ti is presented. A complete set of matrix elements for the quintuplet of states in Ti, centered on the core excitation, was measured for the first time. A total of nine matrix elements are reported, four of which were previously unknown. Ti shows a quenching in electric quadrupole transition strength as compared to its semi-magic Ti neighbour. This quenching, while empirically unprecedented, can be explained with a remarkably simple two-state mixing model, which is also consistent with other ground-state properties such as the magnetic dipole moment and electric quadrupole moment. A connection to nucleon transfer data and the quenching of single-particle strength is also demonstrated. The simplicity of the Ti-Ti pair (i.e., approximate single- valence space and isolation of yrast states from non-yrast states) provides a unique opportunity to disentangle otherwise competing effects in the ground-state properties of atomic nuclei, the emergence of collectivity, and the role of proton-neutron interactions.
Keywords
Cite
@article{arxiv.2407.03503,
title = {Suppressed Electric Quadrupole Collectivity in $^{49}$Ti},
author = {T. J. Gray and J. M. Allmond and C. Benetti and C. Wibisono and L. Baby and A. Gargano and T. Miyagi and A. O. Macchiavelli and A. E. Stuchbery and J. L. Wood and S. Ajayi and J. Aragon and B. W. Asher and P. Barber and S. Bhattacharya and R. Boisseau and J. M. Christie and A. L. Conley and P. De Rosa and D. T. Dowling and C. Esparza and J. Gibbons and K. Hanselman and J. D. Holt and S. Lopez-Caceres and E. Lopez Saavedra and G. W. McCann and A. Morelock and B. Kelly and T. T. King and B. C. Rasco and V. Sitaraman and S. L. Tabor and E. Temanson and V. Tripathi and I. Wiedenhöver and R. B. Yadav},
journal= {arXiv preprint arXiv:2407.03503},
year = {2024}
}
Comments
8 pages, 5 figures, accepted in Physics Letters B