arXiv:1911.10931·v1·Nuclear Theory
Quasibound states of an antiproton and a hydrogen atom
Daniel Baye🇧🇪 · Jérémy Dohet-Eraly🇧🇪
Abstract
Accurate three-body quantal calculations of the system composed of a proton, an antiproton, and an electron are performed in perimetric coordinates with the Lagrange-mesh method, an approximate variational calculation with the simplicity of a calculation on a grid. Quasibound states with respect to the + H() threshold are obtained for to 71 for various vibrational excitations. Their energies have accuracies up to about atomic units while less precise energies are determined for broader resonances. Their structure is analyzed with the help of mean distances between the particles. These mean distances indicate that the proton-electron subsystem is in excited states, mostly , as predicted by Sakimoto (Phys. Rev. A 98, 042503, 2018) with the Born-Oppenheimer approximation. A comparison performed with this approximation provides the accuracies of its energies and of its proton-antiproton mean distances.
Comments: Submitted to Phys. Rev. A