Spectroscopy of $^{35}$P using the one-proton knockout reaction
A. Mutschler (IPNO, GANIL), O. Sorlin (GANIL), A. Lemasson (NSCL,, GANIL), D. Bazin (NSCL), C. Borcea (IFIN HH), R. Borcea (IFIN HH), A. Gade, (NSCL), H. Iwasaki (NSCL), E. Khan (IPNO), A. Lepailleur (GANIL), F. Recchia, (NSCL), T. Roger (GANIL), F. Rotaru (IFIN HH)

TL;DR
This study used one-proton knockout reactions and gamma-ray detection to map the energy levels of $^{35}$P, revealing detailed nuclear structure and new states possibly involving neutron core excitations.
Contribution
It provides the first detailed level scheme of $^{35}$P up to 7.5 MeV using knockout reactions and compares spectroscopic factors across different reaction types, identifying new states and mechanisms.
Findings
Level scheme of $^{35}$P extended up to 7.5 MeV.
Spectroscopic factors agree across different reaction methods with a reduction factor.
Discovery of new states likely involving neutron core excitations.
Abstract
The structure of P was studied with a one-proton knockout reaction at88~MeV/u from a S projectile beam at NSCL. The rays from thedepopulation of excited states in P were detected with GRETINA, whilethe P nuclei were identified event-by-event in the focal plane of theS800 spectrograph. The level scheme of P was deduced up to 7.5 MeV using coincidences. The observed levels were attributed to protonremovals from the -shell and also from the deeply-bound orbital.The orbital angular momentum of each state was derived from the comparisonbetween experimental and calculated shapes of individual (-gated)parallel momentum distributions. Despite the use of different reactions andtheir associate models, spectroscopic factors, , derived from theS knockout reaction agree with those obtained earlier…
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