State-selective electron capture in collisions of C6+, N 7+ with Hydrogen at intermediate energies

We present a joint study of the electron capture process in multicharged ions on atomic Hydrogen at intermediate energies. We have applied two methods, the Eikonal Impulse Approximation (EIA) and the hydrogenic-Classical Trajectory Monte Carlo (CTMC) method. Good agreement is found in both total and...

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Autores principales: Jorge, A., Errea, L.F., Gravielle, M.S., Illescas, C., Méndez, L., Miraglia, J.E.
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Acceso en línea:http://hdl.handle.net/20.500.12110/paper_17426588_v488_nSECTION8_p_Jorge
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spelling todo:paper_17426588_v488_nSECTION8_p_Jorge2023-10-03T16:30:54Z State-selective electron capture in collisions of C6+, N 7+ with Hydrogen at intermediate energies Jorge, A. Errea, L.F. Gravielle, M.S. Illescas, C. Méndez, L. Miraglia, J.E. Ions Monte Carlo methods Classical trajectory monte carlo methods Electron capture Electron-capture cross sections Electron-capture process Impulse approximation Intermediate energies Multi-charged ion State selective Atomic hydrogen Atoms We present a joint study of the electron capture process in multicharged ions on atomic Hydrogen at intermediate energies. We have applied two methods, the Eikonal Impulse Approximation (EIA) and the hydrogenic-Classical Trajectory Monte Carlo (CTMC) method. Good agreement is found in both total and state-selective electron capture cross sections. © Published under licence by IOP Publishing Ltd. CONF info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_17426588_v488_nSECTION8_p_Jorge
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Ions
Monte Carlo methods
Classical trajectory monte carlo methods
Electron capture
Electron-capture cross sections
Electron-capture process
Impulse approximation
Intermediate energies
Multi-charged ion
State selective
Atomic hydrogen
Atoms
spellingShingle Ions
Monte Carlo methods
Classical trajectory monte carlo methods
Electron capture
Electron-capture cross sections
Electron-capture process
Impulse approximation
Intermediate energies
Multi-charged ion
State selective
Atomic hydrogen
Atoms
Jorge, A.
Errea, L.F.
Gravielle, M.S.
Illescas, C.
Méndez, L.
Miraglia, J.E.
State-selective electron capture in collisions of C6+, N 7+ with Hydrogen at intermediate energies
topic_facet Ions
Monte Carlo methods
Classical trajectory monte carlo methods
Electron capture
Electron-capture cross sections
Electron-capture process
Impulse approximation
Intermediate energies
Multi-charged ion
State selective
Atomic hydrogen
Atoms
description We present a joint study of the electron capture process in multicharged ions on atomic Hydrogen at intermediate energies. We have applied two methods, the Eikonal Impulse Approximation (EIA) and the hydrogenic-Classical Trajectory Monte Carlo (CTMC) method. Good agreement is found in both total and state-selective electron capture cross sections. © Published under licence by IOP Publishing Ltd.
format CONF
author Jorge, A.
Errea, L.F.
Gravielle, M.S.
Illescas, C.
Méndez, L.
Miraglia, J.E.
author_facet Jorge, A.
Errea, L.F.
Gravielle, M.S.
Illescas, C.
Méndez, L.
Miraglia, J.E.
author_sort Jorge, A.
title State-selective electron capture in collisions of C6+, N 7+ with Hydrogen at intermediate energies
title_short State-selective electron capture in collisions of C6+, N 7+ with Hydrogen at intermediate energies
title_full State-selective electron capture in collisions of C6+, N 7+ with Hydrogen at intermediate energies
title_fullStr State-selective electron capture in collisions of C6+, N 7+ with Hydrogen at intermediate energies
title_full_unstemmed State-selective electron capture in collisions of C6+, N 7+ with Hydrogen at intermediate energies
title_sort state-selective electron capture in collisions of c6+, n 7+ with hydrogen at intermediate energies
url http://hdl.handle.net/20.500.12110/paper_17426588_v488_nSECTION8_p_Jorge
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