Dynamical calculation of direct muon-transfer rates from thermalized muonic hydrogen to C6+ and O8+
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American Physical Society (APS)
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Resumo
Moun-transfer reactions from muonic hydrogen to carbon and oxygen nuclei employing a full quantum-mechanical few-body description of rearrangement scattering were studied by solving the Faddeev-Hahn-type equations using close-coupling approximation. The application of a close-coupling-type ansatz led to satisfactory results for direct muon-transfer reactions from muonic hydrogen to C6+ and O8+.
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Approximation theory , Asymptotic stability , Boundary conditions , Carbon , Charge transfer , Electron energy levels , Electron scattering , Hydrogen , Integrodifferential equations , Isotopes , Oxygen , Quantum theory , Close coupling approximation , Coulomb interaction , Integrodifferential Faddeev-Hahn type equation , Muon transfer rate , Thermalized muonic hydrogen isotope , Three body charge transfer reaction , High energy physics
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Citação
Physical Review A - Atomic, Molecular, and Optical Physics, v. 62, n. 2, p. 022509-022501, 2000.







