Energy loss of helium ions in zinc

The measurement of the energy loss of helium ions in zinc was described. The Rutherford scattering and transmission technique was used to determine the electron loss of helium ions in the energy range from 37.5 to 1750 keV/amu. The evaluation of the contributions of the valence electrons and inner-s...

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Autores principales: Lantschner, G.H., Eckardt, J.C., Lifschitz, A.F., Arista, N.R., Araujo, L.L., Duarte, P.F., Dos Santos, J.H.R., Behar, M., Dias, J.F., Grande, P.L., Montanari, C.C., Miraglia, J.E.
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Acceso en línea:http://hdl.handle.net/20.500.12110/paper_10502947_v69_n6_p062903_Lantschner
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spelling todo:paper_10502947_v69_n6_p062903_Lantschner2023-10-03T15:59:40Z Energy loss of helium ions in zinc Lantschner, G.H. Eckardt, J.C. Lifschitz, A.F. Arista, N.R. Araujo, L.L. Duarte, P.F. Dos Santos, J.H.R. Behar, M. Dias, J.F. Grande, P.L. Montanari, C.C. Miraglia, J.E. Approximation theory Electron gas Energy dissipation Ion beams Ionization Perturbation techniques Rutherford backscattering spectroscopy Zinc Free electrons Local plasma approximation (LPA) Unitary convolution approximation Valence electrons Helium The measurement of the energy loss of helium ions in zinc was described. The Rutherford scattering and transmission technique was used to determine the electron loss of helium ions in the energy range from 37.5 to 1750 keV/amu. The evaluation of the contributions of the valence electrons and inner-shell to the total energy loss was also discussed. The results show that the contribution of the inner-shell electrons is increased from ∼50% at 37.5 keV/amu to ∼85% at 1.7 MeV/amu. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_10502947_v69_n6_p062903_Lantschner
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Approximation theory
Electron gas
Energy dissipation
Ion beams
Ionization
Perturbation techniques
Rutherford backscattering spectroscopy
Zinc
Free electrons
Local plasma approximation (LPA)
Unitary convolution approximation
Valence electrons
Helium
spellingShingle Approximation theory
Electron gas
Energy dissipation
Ion beams
Ionization
Perturbation techniques
Rutherford backscattering spectroscopy
Zinc
Free electrons
Local plasma approximation (LPA)
Unitary convolution approximation
Valence electrons
Helium
Lantschner, G.H.
Eckardt, J.C.
Lifschitz, A.F.
Arista, N.R.
Araujo, L.L.
Duarte, P.F.
Dos Santos, J.H.R.
Behar, M.
Dias, J.F.
Grande, P.L.
Montanari, C.C.
Miraglia, J.E.
Energy loss of helium ions in zinc
topic_facet Approximation theory
Electron gas
Energy dissipation
Ion beams
Ionization
Perturbation techniques
Rutherford backscattering spectroscopy
Zinc
Free electrons
Local plasma approximation (LPA)
Unitary convolution approximation
Valence electrons
Helium
description The measurement of the energy loss of helium ions in zinc was described. The Rutherford scattering and transmission technique was used to determine the electron loss of helium ions in the energy range from 37.5 to 1750 keV/amu. The evaluation of the contributions of the valence electrons and inner-shell to the total energy loss was also discussed. The results show that the contribution of the inner-shell electrons is increased from ∼50% at 37.5 keV/amu to ∼85% at 1.7 MeV/amu.
format JOUR
author Lantschner, G.H.
Eckardt, J.C.
Lifschitz, A.F.
Arista, N.R.
Araujo, L.L.
Duarte, P.F.
Dos Santos, J.H.R.
Behar, M.
Dias, J.F.
Grande, P.L.
Montanari, C.C.
Miraglia, J.E.
author_facet Lantschner, G.H.
Eckardt, J.C.
Lifschitz, A.F.
Arista, N.R.
Araujo, L.L.
Duarte, P.F.
Dos Santos, J.H.R.
Behar, M.
Dias, J.F.
Grande, P.L.
Montanari, C.C.
Miraglia, J.E.
author_sort Lantschner, G.H.
title Energy loss of helium ions in zinc
title_short Energy loss of helium ions in zinc
title_full Energy loss of helium ions in zinc
title_fullStr Energy loss of helium ions in zinc
title_full_unstemmed Energy loss of helium ions in zinc
title_sort energy loss of helium ions in zinc
url http://hdl.handle.net/20.500.12110/paper_10502947_v69_n6_p062903_Lantschner
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