用局部高斯势相函数法分析中子- α弹性散射的相移

L R Amruth Kumar, Anil Khachi, O. Sastri
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引用次数: 1

摘要

背景:为了拟合实验散射相移(SPS),利用带有Thomas型自旋轨道项的高斯势对核子-原子核散射进行了研究。近年来,无自旋轨道项的Hulthen势被用于相函数法(PFM)研究α -核子散射。目的:本文的主要目的是:1。得到最能描述中子-α弹性sps在不同通道中的最佳相互作用势。计算散射p态的部分截面和反应的总截面。方法:采用高斯函数对局部相互作用势进行建模。选择非局域自旋轨道项与局域势的导数成正比。采用五阶龙格-库塔法对相函数法进行了数值求解。模型参数以迭代的方式变化,以尽量减少实验sps的平均绝对百分比误差(MAPE)。在MAPE值小于3%的情况下,获得了S、P和D通道的SPS。绘制了p1 /2和p3 /2的部分截面,发现各自的共振能量和FWHM与文献值基本一致。测定了反应的总横截面,发现与实验结果吻合得很好。结论:带自旋轨道项的高斯势是解释n-α散射反应的较好选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phase Shift Analysis for Neutron-Alpha Elastic Scattering Using Phase Function Method with Local Gaussian Potential
Background: The nucleon-nucleus scattering has been studied using Gaussain potential withspin-orbit term of Thomas type to fit the experimental scattering phase shifts (SPS). Recently,Hulthen potential without spin-orbit term has been utilised for studying α–nucleon scattering with phase function method (PFM).Purpose: The main objectives of this paper are:1. To obtain the best possible interaction potentials that best describe the neutron-α elasticSPS in various channels.2. To compute the partial cross-sections for scattering p-states and the total cross-section forthe reaction.Methods: The local interaction potential is modeled using Gaussian function. The non-localspin orbit term is chosen to be proportional to derivative of local potential. The phase function method has been numerically solved using 5th order Runge-Kutta method to compute the SPS. The model parameters are varied in an iterative fashion to minimise the mean absolute percentage error (MAPE) w.r.t. the experimental SPS.Results:1. The SPS for S, P and D channels have been obtained with MAPE values less than 3%.2. The partial cross-sections for p 1/2 and p 3/2 have been plotted and the respective resonance energies and FWHM have been found to be in reasonable agreement with values in literature.3. The total cross-section for the reaction has been determined and found to be matching well with experimental findings.Conclusions: Gaussian potential with associated spin-orbit term has been shown to be areasonably good choice for explaining the n-α scattering reaction.
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