Analytical solution for nuclear plus atomic Hulthen potential-A perturbative approach

M. Majumder, U. Laha, A. Panigrahi
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Abstract

In this work, we construct the analytical solution of the Schrödinger equation for a combined nuclear plus atomic Hulthén potential with different range parameters, using the Frobenius method. The atomic Hulthén potential acts as the screened Coulomb potential to represent the very short-range electromagnetic interaction. It is intended to emphasize how the impact of the combined potential in these situations is routinely examined within the context of nuclear physics. The Jost function is calculated from its integral representation in terms of the regular solution. From the phase of the Jost function, the scattering phase shifts for different partial waves, and further differential scattering cross-section and total cross-sections are calculated for alpha-proton and proton–proton systems. On comparing with the existing experimental data, we conclude that the results obtained are in close conformity with the previous works that exist in the literature.
核加原子Hulthen势的解析解- a微扰方法
本文利用Frobenius方法,构造了具有不同范围参数的核与原子组合hulthsamn势的Schrödinger方程的解析解。原子的hulthassen势作为屏蔽的库仑势来表示极短程电磁相互作用。它的目的是强调如何在核物理学的范围内例行检查这些情况下的综合势的影响。约斯特函数是根据正则解的积分表示来计算的。从Jost函数的相位出发,计算了不同部分波的散射相移,并进一步计算了α -质子和质子-质子体系的微分散射截面和总散射截面。通过与已有实验数据的比较,我们得出结论,所得结果与文献中已有的工作非常吻合。
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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