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Coulomb three-body systems and charge transfer collisions in a configuration-space approach

2003/08/25 by Renat A. Sultanov, Sadhan K. Adhikari
Physics and Astronomy · #physics.atm-clus

paper · pdf

published as Nucl. Phys. A 737C (2004) 346-348 · 3 pages, 1 ps figure, Parallel session talk at the 17th international conference in few-body physics, Duke university, 2003, to appear in Nuclear Physics A

arxiv created 2003/08/25 · arxiv updated 2009/12/01

Abstract

Some low-energy three-body muon- and electron-transfer processes are considered within the Faddeev-Hahn formulation using two-, six-, and ten-state close-coupling approximation. We test our approach in bound-state problems for systems H2+ and (μ-dd)+ within six- and ten-state schemes, where d is a deuteron and μ a muon. We present results in the six-state model for muonium formation from hydrogen. We also present results for muon-transfer rates from muonic hydrogen isotopes to bare nuclei S16 and Ar18 in reasonable agreement with experiment. For these heavier targets a polarization potential is included and Coulomb potentials are treated exactly without approximation or cut off.

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