Application of the semiclassical distorted wave model to the inclusive (d, d′x) reaction

We apply the semiclassical distorted wave model to the deuteroninduced inclusive (d, d′x) reaction. The calculated double differential cross sections (DDXs) as a function of the deuteron emission energy and the scattering angle are compared with experimental data. The calculated DDXs reasonably repr...

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Main Authors: Nakada Hibiki, Yoshida Kazuki, Ogata Kazuyuki
Format: Article
Language:English
Published: EDP Sciences 2024-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2024/02/epjconf_nrm2023_06002.pdf
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author Nakada Hibiki
Yoshida Kazuki
Ogata Kazuyuki
author_facet Nakada Hibiki
Yoshida Kazuki
Ogata Kazuyuki
author_sort Nakada Hibiki
collection DOAJ
description We apply the semiclassical distorted wave model to the deuteroninduced inclusive (d, d′x) reaction. The calculated double differential cross sections (DDXs) as a function of the deuteron emission energy and the scattering angle are compared with experimental data. The calculated DDXs reasonably reproduce experimental data in the small energy-transfer region and at the forward angles. It is found that the refraction, which is the changes in the kinematics of the deuteron inside a nucleus, is necessary to reasonably reproduce the experimental data. We show that the refraction causes the increase/decrease in the differential cross section of the elementary process, hence the DDX.
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spelling doaj.art-feb276fa44c74d10b84ed2908f2f14982024-03-22T08:03:11ZengEDP SciencesEPJ Web of Conferences2100-014X2024-01-012920600210.1051/epjconf/202429206002epjconf_nrm2023_06002Application of the semiclassical distorted wave model to the inclusive (d, d′x) reactionNakada Hibiki0Yoshida Kazuki1Ogata Kazuyuki2Research Center for Nuclear Physics, Osaka UniversityAdvanced Science Research Center, Japan Atomic Energy AgencyDepartment of Physics, Kyushu UniversityWe apply the semiclassical distorted wave model to the deuteroninduced inclusive (d, d′x) reaction. The calculated double differential cross sections (DDXs) as a function of the deuteron emission energy and the scattering angle are compared with experimental data. The calculated DDXs reasonably reproduce experimental data in the small energy-transfer region and at the forward angles. It is found that the refraction, which is the changes in the kinematics of the deuteron inside a nucleus, is necessary to reasonably reproduce the experimental data. We show that the refraction causes the increase/decrease in the differential cross section of the elementary process, hence the DDX.https://www.epj-conferences.org/articles/epjconf/pdf/2024/02/epjconf_nrm2023_06002.pdf
spellingShingle Nakada Hibiki
Yoshida Kazuki
Ogata Kazuyuki
Application of the semiclassical distorted wave model to the inclusive (d, d′x) reaction
EPJ Web of Conferences
title Application of the semiclassical distorted wave model to the inclusive (d, d′x) reaction
title_full Application of the semiclassical distorted wave model to the inclusive (d, d′x) reaction
title_fullStr Application of the semiclassical distorted wave model to the inclusive (d, d′x) reaction
title_full_unstemmed Application of the semiclassical distorted wave model to the inclusive (d, d′x) reaction
title_short Application of the semiclassical distorted wave model to the inclusive (d, d′x) reaction
title_sort application of the semiclassical distorted wave model to the inclusive d d x reaction
url https://www.epj-conferences.org/articles/epjconf/pdf/2024/02/epjconf_nrm2023_06002.pdf
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AT yoshidakazuki applicationofthesemiclassicaldistortedwavemodeltotheinclusiveddxreaction
AT ogatakazuyuki applicationofthesemiclassicaldistortedwavemodeltotheinclusiveddxreaction