Numerical Study of Fusion Cross Sections for 12C+12C and 16O+16O Reactions by Using Wong Formula

The height of the barrier between the interacting nuclei is one of the interesting topics in nuclear reaction, especially in charged-particle nuclear reactions. Wong formula is one method that can be used to perform such study, especially about fusion cross section. Therefore, a study about fusion c...

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Main Authors: Yacobus Yulianto, Zaki Zu'ud
Format: Article
Language:English
Published: Lambung Mangkurat University Press 2018-12-01
Series:Jurnal Fisika Flux
Subjects:
Online Access:https://ppjp.ulm.ac.id/journal/index.php/f/article/view/5039
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spelling doaj-5bc2a2acd95b4c5bb672c6f829cbbd8e2020-11-25T03:56:55ZengLambung Mangkurat University PressJurnal Fisika Flux1829-796X2541-17132018-12-0115210510910.20527/flux.v15i2.50395093Numerical Study of Fusion Cross Sections for 12C+12C and 16O+16O Reactions by Using Wong FormulaYacobus Yulianto0Zaki Zu'ud1Advanced Nuclear Laboratory, Physics Department, Faculty of Mathematics and Natural Science, Institut Teknologi Bandung Jl. Ganesha 10, Bandung 40132, IndonesiaAdvanced Nuclear Laboratory, Physics Department, Faculty of Mathematics and Natural Science, Institut Teknologi Bandung Jl. Ganesha 10, Bandung 40132, IndonesiaThe height of the barrier between the interacting nuclei is one of the interesting topics in nuclear reaction, especially in charged-particle nuclear reactions. Wong formula is one method that can be used to perform such study, especially about fusion cross section. Therefore, a study about fusion cross sections of some light nuclei with Wong formula becomes very interesting to be performed. In this study, the fusion cross sections of 12C+12C and 16O+16O reactions have been calculated by using Wong formula at 12<=E<=32 MeV of energies. The potential of the interacting nuclei was approached by using Woods-Saxon potential. The calculations performed numerically by using both finite different and Nelder-Mead methods. The obtained results of this study have achieved a good agreement with the experimental results and the calculation results of the other researchers. Those results were indicated that Wong formula has good capability in explaining the experimental results concerning fusion cross section of light nuclei.https://ppjp.ulm.ac.id/journal/index.php/f/article/view/5039wong formulafusion reactioncross sectionlight nuclei
collection DOAJ
language English
format Article
sources DOAJ
author Yacobus Yulianto
Zaki Zu'ud
spellingShingle Yacobus Yulianto
Zaki Zu'ud
Numerical Study of Fusion Cross Sections for 12C+12C and 16O+16O Reactions by Using Wong Formula
Jurnal Fisika Flux
wong formula
fusion reaction
cross section
light nuclei
author_facet Yacobus Yulianto
Zaki Zu'ud
author_sort Yacobus Yulianto
title Numerical Study of Fusion Cross Sections for 12C+12C and 16O+16O Reactions by Using Wong Formula
title_short Numerical Study of Fusion Cross Sections for 12C+12C and 16O+16O Reactions by Using Wong Formula
title_full Numerical Study of Fusion Cross Sections for 12C+12C and 16O+16O Reactions by Using Wong Formula
title_fullStr Numerical Study of Fusion Cross Sections for 12C+12C and 16O+16O Reactions by Using Wong Formula
title_full_unstemmed Numerical Study of Fusion Cross Sections for 12C+12C and 16O+16O Reactions by Using Wong Formula
title_sort numerical study of fusion cross sections for 12c+12c and 16o+16o reactions by using wong formula
publisher Lambung Mangkurat University Press
series Jurnal Fisika Flux
issn 1829-796X
2541-1713
publishDate 2018-12-01
description The height of the barrier between the interacting nuclei is one of the interesting topics in nuclear reaction, especially in charged-particle nuclear reactions. Wong formula is one method that can be used to perform such study, especially about fusion cross section. Therefore, a study about fusion cross sections of some light nuclei with Wong formula becomes very interesting to be performed. In this study, the fusion cross sections of 12C+12C and 16O+16O reactions have been calculated by using Wong formula at 12<=E<=32 MeV of energies. The potential of the interacting nuclei was approached by using Woods-Saxon potential. The calculations performed numerically by using both finite different and Nelder-Mead methods. The obtained results of this study have achieved a good agreement with the experimental results and the calculation results of the other researchers. Those results were indicated that Wong formula has good capability in explaining the experimental results concerning fusion cross section of light nuclei.
topic wong formula
fusion reaction
cross section
light nuclei
url https://ppjp.ulm.ac.id/journal/index.php/f/article/view/5039
work_keys_str_mv AT yacobusyulianto numericalstudyoffusioncrosssectionsfor12c12cand16o16oreactionsbyusingwongformula
AT zakizuud numericalstudyoffusioncrosssectionsfor12c12cand16o16oreactionsbyusingwongformula
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