Calculation of Coulomb breakup cross sections using a new Coulomb dynamical polarization potential
arXiv:2206.07546 · doi:10.1103/PhysRevC.106.054613
Abstract
A new method for calculating the Coulomb breakup of unstable neutron-rich isotopes at high energies is presented. The calculations employ the eikonal approximation and use a new Coulomb dynamical polarization potential (CDPP), calculated by solving the Schrödinger equation for the entire motion of the exotic projectile as a two-body cluster structure using the adiabatic approximation and incorporating excitations to the continuum. Calculations for some exotic isotopes are compared with Coulomb dissociation cross section data and found to be in good agreement.
7 pages, 3 figures, references added, energy convolution is included, results changed slightly, two figures (calculations for two-neutron halo projectiles) deleted
References in corpus (3)
- Reliable extraction of the for Be from its breakup at 520 MeV/nucleon
- Determining distributions of weakly bound nuclei from breakup cross sections using Continuum Discretized Coupled Channels calculations. Application to Be
- Determination of the Neutron-Capture Rate of 17C for the R-process Nucleosynthesis