Eikonal reaction theory for two-neutron removal reactions
arXiv:1404.1155 · doi:10.1103/PhysRevC.90.027601
Abstract
The eikonal reaction theory (ERT) proposed lately is a method of calculating one-neutron removal reactions at intermediate incident energies in which Coulomb breakup is treated accurately with the continuum discretized coupled-channels method. ERT is extended to two-neutron removal reactions. ERT reproduces measured one- and two-neutron removal cross sections for 6He scattering on 12C and 208Pb targets at 240 MeV/nucleon and also on a 28Si target at 52 MeV/nucleon. For the heavier target in which Coulomb breakup is important, ERT yields much better agreement with the measured cross sections than the Glauber model.
4 pages, 3 figures
References in corpus (7)
- Four-body continuum-discretized coupled-channels calculations using a transformed harmonic oscillator basis
- The continuum discretized coupled-channels method and its applications
- Four-body continuum-discretized coupled-channels calculations
- Coulomb corrected eikonal description of the breakup of halo nuclei
- New description of four-body breakup reaction
- Eikonal Reaction Theory for Neutron-Removal Reaction
- Correlations probed in direct two-nucleon removal reactions