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Angular Differential Cross-Section for Ionization of Helium in C6+ Ion Collision |
A. C. Gagyi-Pálffy1;I. F. Barna2;L. Gulyás3;K. Tökési3 |
1Department of Theoretical Physics, University of Bucharest, Romania
2Max-Planck-Institute for Physics of Complex Systems, Nöthnitzer Str. 38, 01187 Dresden, Germany
3Institute of Nuclear Research, Hungarian Academy of Science (ATOMKI), H-4001 Debrecen, PO Box 51, Hungary |
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Cite this article: |
A. C. Gagyi-Pálffy, I. F. Barna, L. Gulyás et al 2004 Chin. Phys. Lett. 21 1258-1261 |
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Abstract With the help of the density operator, the angular differential cross-section for ionization of helium is calculated within the framework of the one-centre atomic-orbital close-coupling method. We consider a naked C6+ ion as projectile with an energy of 2.5 MeV/a.u. Our result agrees well with the experimental data and the other theoretical calculations such as the first Born approximation, various Distorted Wave models and the classical trajectory Monte Carlo simulation.
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Keywords:
34.50.Fa
34.10.+x
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Published: 01 July 2004
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PACS: |
34.50.Fa
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(Electronic excitation and ionization of atoms (including beam-foil excitation and ionization))
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34.10.+x
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(General theories and models of atomic and molecular collisions and interactions (including statistical theories, transition state, stochastic and trajectory models, etc.))
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