Dissipation by transfer and its influence on fusion

A new version of the CCQEL code has been developed by upgrading the method of coupling of transfer channels during fusion and backscattering processes. In particular, the number of transfer reactions included has been increased and the dependence of the strength of transfer coupling on the transferr...

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Main Authors: Colucci Giulia, Trzcińska Agnieszka, Wen Pei Wei, Piasecki Ernest
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/2024/16/epjconf_fusion2024_01018.pdf
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author Colucci Giulia
Trzcińska Agnieszka
Wen Pei Wei
Piasecki Ernest
author_facet Colucci Giulia
Trzcińska Agnieszka
Wen Pei Wei
Piasecki Ernest
author_sort Colucci Giulia
collection DOAJ
description A new version of the CCQEL code has been developed by upgrading the method of coupling of transfer channels during fusion and backscattering processes. In particular, the number of transfer reactions included has been increased and the dependence of the strength of transfer coupling on the transferred particle and experimental Q-value distribution was introduced. The upgraded code was employed for the investigation of the influence of transfer on the smoothing of the measured quasielastic barrier distribution (Dqe) of the 24Mg + 92Zr and 20Ne + 208Pb systems and found interesting discrepancies with respect to the standard approximations. The study with the upgraded code indicates the transfer responsible for generating strongly excited targets as the leading cause of the smearing of the barrier distribution, even in the case of negative ground state to ground state Q value (Qgg). The smoothing observed in the barrier distribution is dominated rather by one neutron transfer, despite the negative Qgg value for this reaction and the positive Qgg value for two-neutron transfer. Of particular interest is the case of the 20Ne + 208Pb, where the smoothing of the Dqe is mainly influenced by the one neutron pick-up at the beam energy above the barrier, while the one neutron pick-up and one proton stripping transfers are dominant for lower beam energy. These results highlight the importance of the transfer coupling dependence on the experimental Q-value distribution and, consequently, on the projectile kinetic energy.
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spelling doaj-art-d02f1cc6487440f1a88a314cff647e962025-08-20T03:54:07ZengEDP SciencesEPJ Web of Conferences2100-014X2024-01-013060101810.1051/epjconf/202430601018epjconf_fusion2024_01018Dissipation by transfer and its influence on fusionColucci Giulia0Trzcińska Agnieszka1Wen Pei Wei2Piasecki Ernest3Heavy Ion Laboratory, University of WarsawHeavy Ion Laboratory, University of WarsawChina Institute of Atomic EnergyHeavy Ion Laboratory, University of WarsawA new version of the CCQEL code has been developed by upgrading the method of coupling of transfer channels during fusion and backscattering processes. In particular, the number of transfer reactions included has been increased and the dependence of the strength of transfer coupling on the transferred particle and experimental Q-value distribution was introduced. The upgraded code was employed for the investigation of the influence of transfer on the smoothing of the measured quasielastic barrier distribution (Dqe) of the 24Mg + 92Zr and 20Ne + 208Pb systems and found interesting discrepancies with respect to the standard approximations. The study with the upgraded code indicates the transfer responsible for generating strongly excited targets as the leading cause of the smearing of the barrier distribution, even in the case of negative ground state to ground state Q value (Qgg). The smoothing observed in the barrier distribution is dominated rather by one neutron transfer, despite the negative Qgg value for this reaction and the positive Qgg value for two-neutron transfer. Of particular interest is the case of the 20Ne + 208Pb, where the smoothing of the Dqe is mainly influenced by the one neutron pick-up at the beam energy above the barrier, while the one neutron pick-up and one proton stripping transfers are dominant for lower beam energy. These results highlight the importance of the transfer coupling dependence on the experimental Q-value distribution and, consequently, on the projectile kinetic energy.https://www.epj-conferences.org/articles/epjconf/pdf/2024/16/epjconf_fusion2024_01018.pdf
spellingShingle Colucci Giulia
Trzcińska Agnieszka
Wen Pei Wei
Piasecki Ernest
Dissipation by transfer and its influence on fusion
EPJ Web of Conferences
title Dissipation by transfer and its influence on fusion
title_full Dissipation by transfer and its influence on fusion
title_fullStr Dissipation by transfer and its influence on fusion
title_full_unstemmed Dissipation by transfer and its influence on fusion
title_short Dissipation by transfer and its influence on fusion
title_sort dissipation by transfer and its influence on fusion
url https://www.epj-conferences.org/articles/epjconf/pdf/2024/16/epjconf_fusion2024_01018.pdf
work_keys_str_mv AT coluccigiulia dissipationbytransferanditsinfluenceonfusion
AT trzcinskaagnieszka dissipationbytransferanditsinfluenceonfusion
AT wenpeiwei dissipationbytransferanditsinfluenceonfusion
AT piaseckiernest dissipationbytransferanditsinfluenceonfusion