Elastic scattering analysis of p+40 Ca at incident energies from threshold to 48.4 MeV and nuclear matter radius
Proton elastic scattering at various incident energies is one method to study nuclear density distributions and nuclear radii. Single folding potential describing the p-scattering on 40Ca over a broad energy range 9-48.4 MeV is constructed. The resulting potential does not need any renormalization t...
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World Scientific Publishing Co. Pte Ltd
2015
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my.utp.eprints.314892022-03-26T03:20:55Z Elastic scattering analysis of p+40 Ca at incident energies from threshold to 48.4 MeV and nuclear matter radius Ismail, A. Lee, Y.C. Tammam, M. Proton elastic scattering at various incident energies is one method to study nuclear density distributions and nuclear radii. Single folding potential describing the p-scattering on 40Ca over a broad energy range 9-48.4 MeV is constructed. The resulting potential does not need any renormalization to fit the measured elastic scattering angular distributions and total reaction cross-sections. Furthermore, correlation between volume integral and proton incident energy is discussed. Theoretical calculations are in a good agreement with existing experimental data. © 2015 World Scientific Publishing Company. World Scientific Publishing Co. Pte Ltd 2015 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-84938053546&doi=10.1142%2fS021830131550055X&partnerID=40&md5=457c4e9a30b4ec1f78adcbf4de3be02e Ismail, A. and Lee, Y.C. and Tammam, M. (2015) Elastic scattering analysis of p+40 Ca at incident energies from threshold to 48.4 MeV and nuclear matter radius. International Journal of Modern Physics E, 24 (7). http://eprints.utp.edu.my/31489/ |
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Proton elastic scattering at various incident energies is one method to study nuclear density distributions and nuclear radii. Single folding potential describing the p-scattering on 40Ca over a broad energy range 9-48.4 MeV is constructed. The resulting potential does not need any renormalization to fit the measured elastic scattering angular distributions and total reaction cross-sections. Furthermore, correlation between volume integral and proton incident energy is discussed. Theoretical calculations are in a good agreement with existing experimental data. © 2015 World Scientific Publishing Company. |
format |
Article |
author |
Ismail, A. Lee, Y.C. Tammam, M. |
spellingShingle |
Ismail, A. Lee, Y.C. Tammam, M. Elastic scattering analysis of p+40 Ca at incident energies from threshold to 48.4 MeV and nuclear matter radius |
author_facet |
Ismail, A. Lee, Y.C. Tammam, M. |
author_sort |
Ismail, A. |
title |
Elastic scattering analysis of p+40 Ca at incident energies from threshold to 48.4 MeV and nuclear matter radius |
title_short |
Elastic scattering analysis of p+40 Ca at incident energies from threshold to 48.4 MeV and nuclear matter radius |
title_full |
Elastic scattering analysis of p+40 Ca at incident energies from threshold to 48.4 MeV and nuclear matter radius |
title_fullStr |
Elastic scattering analysis of p+40 Ca at incident energies from threshold to 48.4 MeV and nuclear matter radius |
title_full_unstemmed |
Elastic scattering analysis of p+40 Ca at incident energies from threshold to 48.4 MeV and nuclear matter radius |
title_sort |
elastic scattering analysis of p+40 ca at incident energies from threshold to 48.4 mev and nuclear matter radius |
publisher |
World Scientific Publishing Co. Pte Ltd |
publishDate |
2015 |
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-84938053546&doi=10.1142%2fS021830131550055X&partnerID=40&md5=457c4e9a30b4ec1f78adcbf4de3be02e http://eprints.utp.edu.my/31489/ |
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