NASA NTRS · 19930023180
Geometric model from microscopic theory for nuclear absorption
Abstract
A parameter-free geometric model for nuclear absorption is derived herein from microscopic theory. The expression for the absorption cross section in the eikonal approximation, taken in integral form, is separated into a geometric contribution that is described by an energy-dependent effective radius and two surface terms that cancel in an asymptotic series expansion. For collisions of light nuclei, an expression for the effective radius is derived from harmonic oscillator nuclear density functions. A direct extension to heavy nuclei with Woods-Saxon densities is made by identifying the equivalent half-density radius for the harmonic oscillator functions. Coulomb corrections are incorporated, and a simplified geometric form of the Bradt-Peters type is obtained. Results spanning the energy range from 1 MeV/nucleon to 1 GeV/nucleon are presented. Good agreement with experimental results is obtained.
Keep this discovery
Explore connections, maps & timelines
John, Sarah, Townsend, Lawrence W., Wilson, John W., Tripathi, Ram K.. 1993-07-01. Geometric model from microscopic theory for nuclear absorption. https://ntrs.nasa.gov/citations/19930023180
Cite the original work for its findings. Save a collection to share your selection of sources.