arXiv · 1310.8658
Theoretical study of the ${}^{4}\rm{He}(\gamma,p)^3\rm{H}$ and ${}^{4}\rm{He}(\gamma,n)^3\rm{He}$ reactions
Abstract
{\it Ab initio} calculation of the total cross section for the reactions $^{4}\rm{He}(\gamma,p)^3\rm{H}$ and $^{4}\rm{He}(\gamma,n)^3\rm{He}$ is presented, using state-of-the-art nuclear forces. The Lorentz integral transform (LIT) method is applied, which allows exact treatment of the final state interaction (FSI). The dynamic equations are solved using the effective interaction hyperspherical harmonics (EIHH) method. In this calculation of the cross sections the three-nucleon force is fully taken into account, except in the source term of the LIT equation for the FSI transition matrix element.
Explore related subjects
Keep this discovery
Nir Nevo Dinur, Winfried Leidemann, Nir Barnea. 2013-10-31. Theoretical study of the ${}^{4}\rm{He}(\gamma,p)^3\rm{H}$ and ${}^{4}\rm{He}(\gamma,n)^3\rm{He}$ reactions. https://doi.org/10.1007/s00601-013-0754-6
Cite the original work for its findings. Save a collection to share your selection of sources.