Conference Paper

Coupled-Channel Analyses on 〖Ti〗^(46,48,50)+〖Sn〗^124 Heav-ion Fusion Reactions

Volume: 39 Number: 2 June 29, 2018
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Coupled-Channel Analyses on 〖Ti〗^(46,48,50)+〖Sn〗^124 Heav-ion Fusion Reactions

Abstract

Heavy-ion fusion near the Coulomb barrier attract experimental and theoretical interest. The collisons are typically characterized by the presence of many open reaction channels. In the energies around the Coulomb barrier, the processes are elastic scattering, inelastic excitations and fusion operations of one or two nuclei. The fusion process is defined as the effect of one-dimensional barrier penetration model, taking scattering potential as the sum of Coulomb and proximity potential. We have performed heay-ion fusion reactions with coupled-channels (CC) calculations. CC formalism is carried out under barrier energy in heavy- ion fusion reactions. In this work fusion cross sections have been calculated and analyzed in detail for the three systems  in the framework of CC approach (using the codes CCFULL[16], CCFUS [17] and CCDEF [18]) . Calculated results are compared with experimental data, including excitation of the projectile and target to the lowestand states and with the datas computed from ‘nrv’. CCDEF, CCFULL and ‘nrv’ explains the fusion reactions of heavy-ions very well. There is a good agreement between the calculated results with the experimental and nrv results [19].

Keywords

References

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Details

Primary Language

English

Subjects

Pharmacology and Pharmaceutical Sciences

Journal Section

Conference Paper

Authors

Burcu Erol *
Department of Physics, Recep Tayyip Erdogan University
Türkiye

Ahmet Hakan Yılmaz
Department of Physics, Karadeniz Technical University
Türkiye

Publication Date

June 29, 2018

Submission Date

December 4, 2017

Acceptance Date

June 1, 2018

Published in Issue

Year 2018 Volume: 39 Number: 2

APA
Erol, B., & Yılmaz, A. H. (2018). Coupled-Channel Analyses on 〖Ti〗^(46,48,50)+〖Sn〗^124 Heav-ion Fusion Reactions. Cumhuriyet Science Journal, 39(2), 463-468. https://doi.org/10.17776/csj.361383

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