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Continuum discretization methods in a composite particle scattering off a nucleus: Benchmark calculations

机译:从核中散射出来的复合粒子中的连续离散化方法:基准计算

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摘要

The direct comparison of two different continuum discretization methods toward the solution of a composite particle scattering off a nucleus is presented. The first approach-the continuum-discretized coupled-channel method-is based on the differential equation formalism, while the second one-the wave-packet continuum discretization method-uses the integral equation formulation for the composite-particle scattering problem. As benchmark calculations, we have chosen the deuteron off 58Ni target scattering (as a realistic illustrative example) at three different incident energies: high, middle, and low. Clear nonvanishing effects of closed inelastic channels at small and intermediate energies are established. The elastic cross sections found in both approaches are very close to each other for all three considered energies.
机译:提出了两种不同的连续体离散化方法对从核中散射的复合颗粒的解决方案的直接比较。第一种方法是连续微分耦合通道方法,它基于微分方程形式主义,而第二种方法是波包连续性离散化方法,它使用积分方程公式解决了复合粒子的散射问题。作为基准计算,我们选择了三种不同入射能量(高,中和低)下氘在58Ni靶上的散射(作为实际的示例)。在小能量和中等能量下,闭合的无弹性通道具有明显的不消失效果。对于这三种考虑的能量,两种方法中发现的弹性截面都非常接近。

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