Abstract
The breakdown of the N=20 magic number in the so-called island of inversion around Mg32 is well established. Recently developed large-scale shell-model calculations suggest a transitional region between normal- and intruder-dominated nuclear ground states, thus modifying the boundary of the island of inversion. In particular, a dramatic change in single-particle structure is predicted between the ground states of Mg30 and Mg32, with the latter consisting nearly purely of 2p-2h N=20 cross-shell configurations. Single-neutron knockout experiments on Mg30,32 projectiles have been performed. We report on a first direct observation of intruder configurations in the ground states of these very neutron-rich nuclei. Spectroscopic factors to low-lying negative-parity states in the knockout residues are deduced and compare well with shell-model predictions. © 2008 The American Physical Society.
Cite
CITATION STYLE
Terry, J. R., Brown, B. A., Campbell, C. M., Cook, J. M., Davies, A. D., Dinca, D. C., … Pritychenko, B. (2008). Single-neutron knockout from intermediate energy beams of Mg30,32: Mapping the transition into the “island of inversion.” Physical Review C - Nuclear Physics, 77(1). https://doi.org/10.1103/PhysRevC.77.014316
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.