Quenching of the proton $\pi0p_{3/2}$-$\pi0p_{1/2}$ spin-orbit splitting in $^{20}$O and the effect of the tensor force
J. Lois-Fuentes, B. Fern\'andez-Dom\'inguez, T. Roger, F. Delaunay, M. Lozano-Gonz\'alez, O. Sorlin, T. Otsuka, T. Suzuki, N.L. Achouri, M. Caama\~no, C. Cabo, L. C\'aceres, A. Candiello, A. Cassisa, A. Ceulemans, F. Cresto, Q. Delignac, J.A. Due\~nas, D. Fern\'andez-Fern\'andez

TL;DR
This study measures the proton shell gap in neutron-rich 20O, revealing a reduction influenced by the tensor force, contrasting with previous findings of a larger gap.
Contribution
First direct measurement of the Z=6 shell gap in 20O using transfer reactions and ACTAR TPC, highlighting the tensor force's role in shell evolution.
Findings
Z=6 shell gap in 20O is 5.30(14) MeV.
Proton spin-orbit splitting measured in 19N.
Results support tensor force effects over other models.
Abstract
We present the first direct measurement of the Z=6 shell gap in the neutron-rich 20O nucleus. The one-proton removal transfer reaction 2H(20O,3He)19N has been studied using the ACTAR TPC setup at GANIL. The use of ACTAR TPC enabled the measurement of low-cross section proton-removal reactions while preserving resolution. Eight p-hole states with l=1 were identified in 19N accounting for total strengths of 86% and 72% of the 0p3/2 and 0p1/2 single-particle orbitals, respectively. The energies and spectroscopic factors of the measured states allowed to determine the proton spin-orbit splitting 0p3/2 - 0p1/2 in 20O. The Z=6 shell gap has been established to be 5.30(14) MeV. These findings indicate a reduction of the Z=6 shell gap while adding neutrons to the sd-valence orbitals, consistent with the effects of the tensor force predicted by state-of-the-art shell model interaction SFO-tls…
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