arXiv Analytics

Sign in

arXiv:1104.1856 [nucl-th]AbstractReferencesReviewsResources

Deformation effect on total reaction cross sections for neutron-rich Ne-isotopes

Kosho Minomo, Takenori Sumi, Masaaki Kimura, Kazuyuki Ogata, Yoshifumi R. Shimizu, Masanobu Yahiro

Published 2011-04-11, updated 2011-11-20Version 3

Isotope-dependence of measured reaction cross sections in scattering of $^{28-32}$Ne isotopes from $^{12}$C target at 240 MeV/nucleon is analyzed by the double-folding model with the Melbourne $g$-matrix. The density of projectile is calculated by the mean-field model with the deformed Wood-Saxon potential. The deformation is evaluated by the antisymmetrized molecular dynamics. The deformation of projectile enhances calculated reaction cross sections to the measured values.

Related articles: Most relevant | Search more
arXiv:0810.0320 [nucl-th] (Published 2008-10-02)
Elastic and total reaction cross sections of oxygen isotopes in Glauber theory
arXiv:1207.5292 [nucl-th] (Published 2012-07-23)
Glauber-model analysis of total reaction cross sections for Ne, Mg, Si, and S isotopes with Skyrme-Hartree-Fock densities
arXiv:1110.5714 [nucl-th] (Published 2011-10-26)
Total reaction cross sections from $^{141}$141Pr($α$,$α$)$^{141}$Pr elastic scattering and $α$-induced reaction cross sections at low energies