Fusion reaction of a weakly bound nucleus with a deformed target

K. Choi, K. S. Kim, M. Cheoun, W. So, K. Hagino
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Abstract

We discuss the role of deformation of the target nucleus in the fusion reaction of the $^{15}$C + $^{232}$Th system at energies around the Coulomb barrier, for which $^{15}$C is a well-known one-neutron halo nucleus. To this end, we construct the potential between $^{15}$C and $^{232}$Th with the double folding procedure, assuming that the projectile nucleus is composed of the core nucleus, $^{14}$C, and a valance neutron. By taking into account the halo nature of the projectile nucleus as well as the deformation of the target nucleus, we simultaneously reproduce the fusion cross sections for the $^{14}$C + $^{232}$Th and the $^{15}$C + $^{232}$Th systems. Our calculation indicates that the net effect of the breakup and the transfer channels is small for this system.
弱结合核与变形靶的聚变反应
我们讨论了$^{15}$C + $^{232}$Th体系在库仑势垒附近的聚变反应中靶核变形的作用,其中$^{15}$C是一个著名的单中子晕核。为此,我们假设弹核由核心核、$^{14}$C和一个价中子组成,用双折叠方法构造$^{15}$C和$^{232}$Th之间的势。考虑到抛射核的光晕性质和靶核的变形,我们同时重现了$^{14}$C + $^{232}$Th和$^{15}$C + $^{232}$Th体系的聚变截面。我们的计算表明,在这个系统中,分裂和传递通道的净效应很小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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