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Coulomb and nuclear effects in breakup and reaction cross sections

机译:破裂和反应截面中的库仑和核效应

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摘要

We use a three-body continuum discretized coupled channel (CDCC) model to investigate Coulomb and nuclear effects in breakup and reaction cross sections. The breakup of the projectile is simulated by a finite number of square integrable wave functions. First we show that the scattering matrices can be split in a nuclear term and in a Coulomb term. This decomposition is based on the Lippmann-Schwinger equation and requires the scattering wave functions. We present two different methods to separate both effects. Then, we apply this separation to breakup and reaction cross sections of Li7+Pb208. For breakup, we investigate various aspects, such as the role of the α+t continuum, the angular-momentum distribution, and the balance between Coulomb and nuclear effects. We show that there is a large ambiguity in defining the Coulomb and nuclear breakup cross sections, since both techniques, although providing the same total breakup cross sections, strongly differ for the individual components. We suggest a third method which could be efficiently used to address convergence problems at large angular momentum. For reaction cross sections, interference effects are smaller, and the nuclear contribution is dominant above the Coulomb barrier. We also draw attention to different definitions of the reaction cross section which exist in the literature and which may induce small, but significant, differences in the numerical values.
机译:我们使用三体连续介质离散耦合通道(CDCC)模型来研究库仑和核效应在分解和反应截面中的作用。弹丸的破裂是通过有限数量的方可积波函数来模拟的。首先,我们证明了散射矩阵可以在核项和库仑项中拆分。此分解基于Lippmann-Schwinger方程,并且需要散射波函数。我们提出了两种不同的方法来分离两种效果。然后,我们将此分离应用于Li7 + Pb208的分解和反应截面。对于破裂,我们研究了各个方面,例如α+ t连续体的作用,角动量分布以及库仑和核效应之间的平衡。我们表明,定义库仑和核破裂的横截面存在很大的歧义,因为尽管这两种技术虽然提供了相同的总破裂横截面,但对于各个组件却存在很大差异。我们建议第三种方法可以有效地解决大角动量下的会聚问题。对于反应截面,干扰效应较小,并且在库仑势垒上方核贡献占主导地位。我们还提请注意文献中存在的反应截面的不同定义,这些定义可能会引起数值的微小但显着的差异。

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