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Isospin-dependence of the charge-changing cross-section shaped by the charged-particle evaporation process.

Authors :
Zhao, J.W.
Sun, B.-H.
Tanihata, I.
Terashima, S.
Prochazka, A.
Xu, J.Y.
Zhu, L.H.
Meng, J.
Su, J.
Zhang, K.Y.
Geng, L.S.
He, L.C.
Liu, C.Y.
Li, G.S.
Lu, C.G.
Lin, W.J.
Lin, W.P.
Liu, Z.
Ren, P.P.
Sun, Z.Y.
Source :
Physics Letters B. Dec2023, Vol. 847, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

We present the charge-changing cross sections (CCCS) of 11−15C, 13−17N, and 15,17−18O at around 300 MeV/nucleon on a carbon target, which extends to p -shell isotopes with N < Z for the first time. The Glauber model, which considers only the proton distribution of projectile nuclei, underestimates the cross sections by more than 10%. We show that this discrepancy can be resolved by considering the contribution from the charged-particle evaporation process (CPEP) following projectile neutron removal. Using nucleon densities from the deformed relativistic Hartree-Bogoliubov theory in continuum, we investigate the isospin-dependent CPEP contribution to the CCCS for a wide range of neutron-to-proton separation energy asymmetry. Our calculations, which include the CPEP contribution, agree well with existing systematic data and reveal an "evaporation peak" at the isospin symmetric region where the neutron-to-proton separation energy is close to zero. These results suggest that analysis beyond the Glauber model is crucial for accurately determining nuclear charge radii from CCCSs. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03702693
Volume :
847
Database :
Academic Search Index
Journal :
Physics Letters B
Publication Type :
Academic Journal
Accession number :
173853261
Full Text :
https://doi.org/10.1016/j.physletb.2023.138269