Differential cross sections for excitation of H2 by low-energy electron impact

Experimental and theoretical differential cross sections (DCS) for the electron-impact excitation of molecular hydrogen to the B S+u 1 sc Pu 3 sa S+g 3 sC Pu 1 sand the E(F) S+g 1 states are presented at incident energies near to threshold. The experimental DCSs were taken at incident energies of 14...

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Main Authors: Hargreaves, L., Bhari, S., Adjari, B., Liu, X., Laher, R., Zammit, M., Savage, J., Fursa, Dmitry, Bray, Igor, Khakoo, M.
Format: Journal Article
Published: Institute of Physics Publishing Ltd. 2017
Online Access:http://hdl.handle.net/20.500.11937/59413
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author Hargreaves, L.
Bhari, S.
Adjari, B.
Liu, X.
Laher, R.
Zammit, M.
Savage, J.
Fursa, Dmitry
Bray, Igor
Khakoo, M.
author_facet Hargreaves, L.
Bhari, S.
Adjari, B.
Liu, X.
Laher, R.
Zammit, M.
Savage, J.
Fursa, Dmitry
Bray, Igor
Khakoo, M.
author_sort Hargreaves, L.
building Curtin Institutional Repository
collection Online Access
description Experimental and theoretical differential cross sections (DCS) for the electron-impact excitation of molecular hydrogen to the B S+u 1 sc Pu 3 sa S+g 3 sC Pu 1 sand the E(F) S+g 1 states are presented at incident energies near to threshold. The experimental DCSs were taken at incident energies of 14, 15, 16 and 17.5 eV and for scattering angles from 10° to 130°. The theoretical DCSs are from the convergent close-coupling method which has recently successfully modeled differential electron scattering from H2 when compared with available experiment at energies of 17.5 eV and above.
first_indexed 2025-11-14T10:16:20Z
format Journal Article
id curtin-20.500.11937-59413
institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T10:16:20Z
publishDate 2017
publisher Institute of Physics Publishing Ltd.
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-594132018-03-16T02:37:24Z Differential cross sections for excitation of H2 by low-energy electron impact Hargreaves, L. Bhari, S. Adjari, B. Liu, X. Laher, R. Zammit, M. Savage, J. Fursa, Dmitry Bray, Igor Khakoo, M. Experimental and theoretical differential cross sections (DCS) for the electron-impact excitation of molecular hydrogen to the B S+u 1 sc Pu 3 sa S+g 3 sC Pu 1 sand the E(F) S+g 1 states are presented at incident energies near to threshold. The experimental DCSs were taken at incident energies of 14, 15, 16 and 17.5 eV and for scattering angles from 10° to 130°. The theoretical DCSs are from the convergent close-coupling method which has recently successfully modeled differential electron scattering from H2 when compared with available experiment at energies of 17.5 eV and above. 2017 Journal Article http://hdl.handle.net/20.500.11937/59413 10.1088/1361-6455/aa9048 Institute of Physics Publishing Ltd. restricted
spellingShingle Hargreaves, L.
Bhari, S.
Adjari, B.
Liu, X.
Laher, R.
Zammit, M.
Savage, J.
Fursa, Dmitry
Bray, Igor
Khakoo, M.
Differential cross sections for excitation of H2 by low-energy electron impact
title Differential cross sections for excitation of H2 by low-energy electron impact
title_full Differential cross sections for excitation of H2 by low-energy electron impact
title_fullStr Differential cross sections for excitation of H2 by low-energy electron impact
title_full_unstemmed Differential cross sections for excitation of H2 by low-energy electron impact
title_short Differential cross sections for excitation of H2 by low-energy electron impact
title_sort differential cross sections for excitation of h2 by low-energy electron impact
url http://hdl.handle.net/20.500.11937/59413