Abstract
A more detailed test of the implementation of nuclear forces that drive shell evolution in the pivotal nucleus Si42 - going beyond earlier comparisons of excited-state energies - is important. The two leading shell-model effective interactions, SDPF-MU and SDPF-U-Si, both of which reproduce the low-lying Si42(21+) energy, but whose predictions for other observables differ significantly, are interrogated by the population of states in neutron-rich Si42 with a one-proton removal reaction from P43 projectiles at 81 MeV/nucleon. The measured cross sections to the individual Si42 final states are compared to calculations that combine eikonal reaction dynamics with these shell-model nuclear structure overlaps. The differences in the two shell-model descriptions are examined and linked to predicted low-lying excited 0+ states and shape coexistence. Based on the present data, which are in better agreement with the SDPF-MU calculations, the state observed at 2150(13) keV in Si42 is proposed to be the (02+) level.
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CITATION STYLE
Gade, A., Brown, B. A., Tostevin, J. A., Bazin, D., Bender, P. C., Campbell, C. M., … Weisshaar, D. (2019). Is the Structure of Si 42 Understood? Physical Review Letters, 122(22). https://doi.org/10.1103/PhysRevLett.122.222501
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