A comparison between full few-body Faddeev/Alt-Grassberger-Sandhas (Faddeev/AGS) and continuum-discretized coupled-channels calculations is made for the resonant and nonresonant breakup of 11Be on proton target at 63.7 MeV/u incident energy. A simplified two-body model is used for 11Be which involves an inert 10Be(0+) core and a valence...
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April 19, 2017 (v1)PublicationUploaded on: March 27, 2023
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February 25, 2022 (v1)Publication
The continuum discretized coupled channels (CDCC) method is compared with the exact solution of the three-body Faddeev equations in momentum space. We present results for (i) elastic and breakup observables of d + 12 C at E d = 56 MeV, (ii) elastic scattering of d + 58 Ni at E d = 80 MeV, and (iii) elastic, breakup, and transfer...
Uploaded on: December 4, 2022 -
April 19, 2017 (v1)Publication
The resonant breakup of 19C on a proton target at 70 MeV/nucleon is analyzed using Faddeev-Alt, Grassberger, Sandhas (Faddeev-AGS) and continuum-discretized coupled-channels (CDCC) reaction frameworks, where in both cases a three-body model (18C+n+p) for the reaction is considered. Taking a 18C + p potential from a global nucleon-nucleus...
Uploaded on: December 4, 2022 -
June 7, 2019 (v1)Publication
Background: For many years, quasifree scattering reactions in direct kinematics have been extensively used to study the structure of stable nuclei, demonstrating the potential of this approach. The R3B collaboration has performed a pilot experiment to study quasifree scattering reactions in inverse kinematics for a stable 12C beam. The results...
Uploaded on: December 4, 2022