PaperPanorama

arXiv:1901.01741·v1·Nuclear Experiment

Observation of excited states in Mg sheds light on nuclear forces and shell evolution

J. S. Randhawa · R. Kanungo · M. Holl · J. D. Holt · P. Navratil · S. R. Stroberg · G. Hagen · G. R. Jansen · M. Alcorta · C. Andreoiu · C. Barnes · C. Burbadge

Abstract

The exotic Borromean nucleus Mg with = 8, located at the proton drip-line provides a unique testing ground for nuclear forces and the evolution of shell structure in the neutron-deficient region. We report on the first observation of proton unbound resonances together with bound states in Mg from the Mg(,) reaction performed at TRIUMF. Phenomenological shell-model calculations offer a reasonable description. However, our experimental results present a challenge for current first-principles nuclear structure approaches and point to the need for improved chiral forces and {\it ab initio} calculations. Furthermore, the differential cross section of the first excited state is compared with distorted-wave Born approximation calculations to deduce a neutron quadrupole deformation parameter of =0.460.21. This provides the first indication of a possible weakening of the = 8 shell closure at the proton drip-line.

Comments: 6 pages, 4 figures

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