Predicting proton-nucleus total reaction cross sections up to 300 MeV using a simple functional form
arXiv:nucl-th/0212051 · doi:10.1103/PhysRevC.67.067602
Abstract
Total reaction cross sections are predicted for proton scattering from various nuclei. A simple functional form has been used that reproduces the total reaction cross sections for the scattering of protons from (15) nuclei spanning the mass range from Be to U and for proton energies 10 to 300 MeV.
10 pages, 5 figures
References in corpus (4)
- Discerning the neutron density distribution of 208Pb from nucleon elastic scattering
- Predicting total reaction cross sections for nucleon-nucleus scattering
- Predictions of total and total reaction cross sections for nucleon-nucleus scattering up to 300 MeV
- A simple functional form for proton-nucleus total reaction cross sections
Cited by in corpus (6)
- Calculations of He+p elastic scattering cross sections using folding approach and high-energy approximation for the optical potential
- Calculations of He+p Elastic Cross Sections Using Microscopic Optical Potential
- Reaction cross sections for proton scattering from stable and unstable nuclei based on a microscopic approach
- Simple function forms and nucleon-nucleus total cross sections
- Momentum distributions in medium and heavy exotic nuclei
- Simple function form for n+208Pb total cross section between 5 and 600 MeV