2013
DOI: 10.1051/epjconf/20136302007
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Effect of Two-neutron Transfer with PositiveQ-value on Sub-barrier Fusion

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Cited by 6 publications
(4 citation statements)
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“…In order to understand the mechanism of neutron rearrangement effect in heavy-ion fusion reactions we need to simultaneously compare the sub-barrier fusion cross sections of two close projectile-target combinations with positive and negative Q-values for neutron transfer reaction channels, see figure 1 of [24] for ( 40 Ca + 90 Zr, 40 Ca + 96 Zr) and ( 16 O + 60 Ni, 18 O + 58 Ni) reactions as two example cases. Under these conditions, one can observe an additional enhancement in the excitation function at energies below the Coulomb barrier [25][26][27][28][29]. It must be noted that the first attempts for taking account of neutron transfer channel between the colliding nuclei within the framework of the CC technique is made by the method proposed in [23].…”
Section: Introductionmentioning
confidence: 99%
“…In order to understand the mechanism of neutron rearrangement effect in heavy-ion fusion reactions we need to simultaneously compare the sub-barrier fusion cross sections of two close projectile-target combinations with positive and negative Q-values for neutron transfer reaction channels, see figure 1 of [24] for ( 40 Ca + 90 Zr, 40 Ca + 96 Zr) and ( 16 O + 60 Ni, 18 O + 58 Ni) reactions as two example cases. Under these conditions, one can observe an additional enhancement in the excitation function at energies below the Coulomb barrier [25][26][27][28][29]. It must be noted that the first attempts for taking account of neutron transfer channel between the colliding nuclei within the framework of the CC technique is made by the method proposed in [23].…”
Section: Introductionmentioning
confidence: 99%
“…77 model significantly underestimates the measurements of the fusion-evaporation excitation functions at sub-barrier energies for a number of systems. However, it appears that this potential model achieves better performance for the lighter colliding systems 12 C+ 30 Si, 28 Si+ 30 Si, and 24 Mg+ 30 Si. These results can be understood by observing the radial behavior of the Coulomb plus nuclear potentials used in the CC calculations (see the inset in the figure).…”
Section: A the Fusion Cross Sectionmentioning
confidence: 99%
“…The existence of heavy-ion reactions with positive and negative fusion -values allows us to investigate the effect of the sign of the -value on the energy-dependent behavior of the coefficient. According to the literature [28][29][30][31][32][33][34], an additional enhancement in the sub-barrier fusion process can be observed due to the coupling of the neutron transfer channels with the positive -values. Nevertheless, the effective -values for various neutron transfer channels, involving single-and multi-neutron (up to six neutrons) stripping (or pick-up), are negative for most of the reactions investigated in this study.…”
Section: Introductionmentioning
confidence: 95%
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