3He Transverse (e,e’) Response Function in the Quasielastic Region

The transverse electron scattering response function RT of 3He is studied in the quasielastic peak region for momentum transfers between 500 and 700 MeV/c. The calculation is carried out in the active nucleon Breit frame. The response in the laboratory frame is then obtained via a transformation...

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Main Authors: Tomusiak E.L., Orlandini G., Leidemann W., Efros V.D.
Format: Article
Language:English
Published: EDP Sciences 2010-04-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20100304010
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spelling doaj-784ed9c63d3d49a9a2a47e4d2995e4172021-08-02T14:37:07ZengEDP SciencesEPJ Web of Conferences2100-014X2010-04-0130401010.1051/epjconf/201003040103He Transverse (e,e’) Response Function in the Quasielastic RegionTomusiak E.L.Orlandini G.Leidemann W.Efros V.D.The transverse electron scattering response function RT of 3He is studied in the quasielastic peak region for momentum transfers between 500 and 700 MeV/c. The calculation is carried out in the active nucleon Breit frame. The response in the laboratory frame is then obtained via a transformation of RT from the active nucleon Breit frame to the laboratory frame. For the current operator one- and two-body parts are taken into account. The one-body current operator includes all leading order relativistic corrections. For the two-body part meson exchange currents consistent with the employed NN potential (Argonne V18) are taken. As three-nucleon force the Urbana IX model is used. In comparison with experiment one finds an excellent agreement of the peak positions. The peak height agrees well with experiment for the lowest considered momentum transfer (500 MeV/c), but tends to be too high for higher momentum transfer (10% at 700 MeV/c). http://dx.doi.org/10.1051/epjconf/20100304010
collection DOAJ
language English
format Article
sources DOAJ
author Tomusiak E.L.
Orlandini G.
Leidemann W.
Efros V.D.
spellingShingle Tomusiak E.L.
Orlandini G.
Leidemann W.
Efros V.D.
3He Transverse (e,e’) Response Function in the Quasielastic Region
EPJ Web of Conferences
author_facet Tomusiak E.L.
Orlandini G.
Leidemann W.
Efros V.D.
author_sort Tomusiak E.L.
title 3He Transverse (e,e’) Response Function in the Quasielastic Region
title_short 3He Transverse (e,e’) Response Function in the Quasielastic Region
title_full 3He Transverse (e,e’) Response Function in the Quasielastic Region
title_fullStr 3He Transverse (e,e’) Response Function in the Quasielastic Region
title_full_unstemmed 3He Transverse (e,e’) Response Function in the Quasielastic Region
title_sort 3he transverse (e,e’) response function in the quasielastic region
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2010-04-01
description The transverse electron scattering response function RT of 3He is studied in the quasielastic peak region for momentum transfers between 500 and 700 MeV/c. The calculation is carried out in the active nucleon Breit frame. The response in the laboratory frame is then obtained via a transformation of RT from the active nucleon Breit frame to the laboratory frame. For the current operator one- and two-body parts are taken into account. The one-body current operator includes all leading order relativistic corrections. For the two-body part meson exchange currents consistent with the employed NN potential (Argonne V18) are taken. As three-nucleon force the Urbana IX model is used. In comparison with experiment one finds an excellent agreement of the peak positions. The peak height agrees well with experiment for the lowest considered momentum transfer (500 MeV/c), but tends to be too high for higher momentum transfer (10% at 700 MeV/c).
url http://dx.doi.org/10.1051/epjconf/20100304010
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