arXiv · 1802.09986
Re-examining the transition into the N=20 island of inversion: structure of $^{30}$Mg
Abstract
Intermediate energy single-neutron removal from $^{31}$Mg has been employed to investigate the transition into the N=20 island of inversion. Levels up to 5~MeV excitation energy in $^{30}$Mg were populated and spin-parity assignments were inferred from the corresponding longitudinal momentum distributions and $\gamma$-ray decay scheme. Comparison with eikonal-model calculations also permitted spectroscopic factors to be deduced. Surprisingly, the 0$^{+}_{2}$ level in $^{30}$Mg was found to have a strength much weaker than expected in the conventional picture of a predominantly $2p - 2h$ intruder configuration having a large overlap with the deformed $^{31}$Mg ground state. In addition, negative parity levels were identified for the first time in $^{30}$Mg, one of which is located at low excitation energy. The results are discussed in the light of shell-model calculations employing two newly developed approaches with markedly different descriptions of the structure of $^{30}$Mg. It is concluded that the cross-shell effects in the region of the island of inversion at Z=12 are considerably more complex than previously thought and that $np - nh$ configurations play a major role in the structure of $^{30}$Mg.
Explore related subjects
Keep this discovery
B. Fernández-Domínguez, B. Pietras, W. N. Catford, N. A. Orr, M. Petri, M. Chartier, S. Paschalis, N. Patterson, J . S. Thomas, M. Caamaño, T. Otsuka, A. Poves, N. Tsunoda, N. L. Achouri, J-C. Angélique, N. I. Ashwood, A . Banu, B. Bastin, R. Borcea, J. Brown, F. Delaunay, S. Franchoo, M. Freer, L. Gaudefroy, S. Heil, M. Labiche, B. Laurent, R. C. Lemmon, A. O. Macchiavelli, F. Negoita, E. S. Paul, C. Rodríguez-Tajes, P. Roussel-Chomaz, M. Staniou, M. J. Taylor, L. Trache, G. L. Wilson. 2018-02-27. Re-examining the transition into the N=20 island of inversion: structure of $^{30}$Mg. https://doi.org/10.1016/j.physletb.2018.02.002
Cite the original work for its findings. Save a collection to share your selection of sources.