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Korobov, V.I.; Melezhik, V.S.; Ponomarev, L.I.
Joint Inst. for Nuclear Research, Dubna (USSR). Lab. of Computing Techniques and Automation1992
Joint Inst. for Nuclear Research, Dubna (USSR). Lab. of Computing Techniques and Automation1992
AbstractAbstract
[en] A numerical scheme for solving the problem of slow collisions in the three-body adiabatic approach is applied for calculation of muon transfer rates in collisions of hydrogen isotope atoms on bare nuclei. It is demonstrated that the multichannel adiabatic approach allows one to reach high accuracy results (∼3%) estimating the cross sections of charge transfer processes which are the best ones up to date. The method is appliable in a wide range of energies (0.001-50 eV) which is of interest for analysis of muon catalysed fusion experiments. 20 refs.; 3 figs.; 5 tabs
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1992; 15 p
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Report
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ADIABATIC APPROXIMATION, BORN-OPPENHEIMER APPROXIMATION, CHARGE-EXCHANGE INTERACTIONS, DEUTERONS, ELASTIC SCATTERING, GROUND STATES, INELASTIC SCATTERING, ISOTOPIC EXCHANGE, MASS, MUONIC ATOMS, PROTONS, RYDBERG STATES, S WAVES, THREE-BODY PROBLEM, THRESHOLD ENERGY, TOTAL CROSS SECTIONS, TRITONS, WAVE FUNCTIONS
ATOMS, BARYONS, BASIC INTERACTIONS, CATIONS, CHARGED PARTICLES, CROSS SECTIONS, ELEMENTARY PARTICLES, ENERGY, ENERGY LEVELS, EXCITED STATES, FERMIONS, FUNCTIONS, HADRONIC ATOMS, HADRONS, HYDROGEN IONS, HYDROGEN IONS 1 PLUS, INTERACTIONS, IONS, MANY-BODY PROBLEM, MESIC ATOMS, NUCLEONS, PARTIAL WAVES, SCATTERING, STRONG INTERACTIONS
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