English

Complete Glauber calculations for proton-nucleus inelastic cross sections

Nuclear Theory 2019-03-27 v1

Abstract

We perform a parameter-free calculation for the high-energy proton-nucleus scattering based on the Glauber theory. A complete evaluation of the so-called Glauber amplitude is made by using the factorization of the single-particle wave functions. The multiple-scattering or multistep processes are fully taken into account within the Glauber theory. We demonstrate that proton- 12^{12}C, 20^{20}Ne, and 28^{28}Si elastic and inelastic scattering (Jπ=0+2+J^\pi=0^+ \to 2^+ and 0+4+0^+ \to 4^+) processes are very well described in a wide range of the incident energies from \sim50 MeV to \sim 1 GeV. We evaluate the validity of a simple one-step approximation andfind that the approximation works fairly well for the inelastic 0+2+0^+ \to 2^+ processes but not for 0+4+0^+ \to 4^+ where the multistep processes become more important. As an application, we quantify the difference between the total reaction and interaction cross sections of proton-12^{12}C, 20^{20}Ne, and 28^{28}Si collisions.

Keywords

Cite

@article{arxiv.1902.02916,
  title  = {Complete Glauber calculations for proton-nucleus inelastic cross sections},
  author = {S. Hatakeyama and W. Horiuchi},
  journal= {arXiv preprint arXiv:1902.02916},
  year   = {2019}
}

Comments

29 pages, 6 figures, to appear in Nucl. Phys. A

R2 v1 2026-06-23T07:35:15.577Z