Further investigation on the fusion of 6Li with 209Bi target at near-barrier energies

Gaolong 张高龙 Zhang, Zhenwei Jiao, Guangxin Zhang, Mariane Cortes, Shipeng Hu, Jianqiang Qian, D. Mengoni, Weiwei Qu, Congbo Li, Yun Zheng, Huanqiao Zhang, Hui-Bin 孙慧斌 Sun, Nan 王楠 Wang, Chunlei Zhang, Javier Valiente, Dmitry Testov, M. Mazzocco, A. Gozzelino, C. Parascandolo, Dimitra Pierroutsakou@na.infn.it, La lacommara, A. Goasduff, D. Bazzacco, Daniel Napoli, F. Galtarossa, Francesco Recchia, Andres Illana, S. Bakes, Irene Zanon, Sezgin Aydin, Giacomo Deangelis, Marco Siciliano, Roberto Menegazzo, Silvia lenzi, Jonas Ferreira, Jeannie Rangel, S. Akkoyun, Luiz Canto, J. Lubian
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Abstract

The complete and incomplete fusion cross sections for 6Li+209Bi were measured via the in-beam γ-ray method around the Coulomb barrier. The cross sections of (deuteron captured) incomplete fusion (ICF) products were re-quantified experimentally for this reaction system. The results reveal that the ICF cross section is equivalent to that of complete fusion (CF) above the Coulomb barrier and dominant near or below the barrier. A theoretical calculation based on the Continuum Discretized Coupled Channel (CDCC) method is performed for the aforementioned CF and ICF cross sections, and the result is consistent with the experimental ones. The universal fusion function (UFF) is also compared with the measured CF cross section with different barrier parameters, demonstrating that the CF suppression factor is quite sensitive to the choice of potential, which can reflect both dynamic and static effects of breakup on the fusion process.
进一步研究 6Li 与 209Bi 靶在近壁垒能量下的聚变问题
在库仑势垒附近,通过束内 γ 射线方法测量了 6Li+209Bi 的完全和不完全聚变截面。对该反应体系的(俘获氘核)不完全聚变(ICF)产物的截面进行了重新量化实验。结果表明,不完全聚变截面在库仑势垒之上等同于完全聚变截面,而在靠近或低于库仑势垒时则占优势。基于连续离散耦合通道(CDCC)方法对上述 CF 和 ICF 截面进行了理论计算,结果与实验结果一致。此外,还将通用聚变函数(UFF)与不同势垒参数下的 CF 截面测量结果进行了比较,结果表明 CF 抑制因子对势垒的选择相当敏感,这可以反映出破裂对聚变过程的动态和静态影响。
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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