The empirical coupled-channel model with the new analytical penetration formula for fusion cross sections

Yi-Tian Mu, Wei-Juan Zhao, Bing Wang
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Abstract

The new analytical barrier penetration formula proposed by Li et al. [Int. J. Mod. Phys. E 19 (2010) 359] for potential barriers containing a long-range Coulomb interaction is adopted in the empirical coupled-channel (ECC) model for calculating fusion cross-sections. As compared with the Hill–Wheeler (HW) formula based on the parabolic approximation, this formula is more appropriate for the barrier penetration with incident energies much lower than the Coulomb barrier. The calculated results show that the ECC model with the new barrier penetration formula can describe the fusion cross-section data well, especially for light systems at energies much lower than the Coulomb barrier. Then the systematics of the difference between the ECC calculation with the new penetration formula and that with the HW formula is investigated. The results show that the difference between the results with the HW formula and the new penetration formula is less than one order of magnitude at [Formula: see text].
融合截面的经验耦合通道模型与新的解析渗透公式
Li等人提出的新的解析势垒穿透公式[j]。J.莫德:物理学。在经验耦合通道(ECC)模型中,采用E 19(2010) 359]计算包含远程库仑相互作用的势垒。与基于抛物近似的Hill-Wheeler (HW)公式相比,该公式更适用于入射能量远低于库仑势垒的势垒穿透。计算结果表明,基于新势垒侵彻公式的ECC模型可以很好地描述聚变截面数据,特别是对于能量远低于库仑势垒的光系统。然后系统地研究了新侵彻公式的ECC计算与HW公式计算的差异。结果表明,在[公式:见文]处,HW公式与新贯入公式的计算结果相差不到一个数量级。
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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