Woods-Saxon和Yukawa模型核势的比较分析

O. Sastri, Aditi Sharma, Swapna Gora, Richa Sharma
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引用次数: 2

摘要

在本文中,我们使用伍兹-撒克逊和汤川相互作用作为平均场来模拟核势,其中每个核子经历由其余核子引起的中心力。以无限球面井波函数为基础,采用矩阵对角化方法求解与时间无关的薛定谔波方程,得到了单粒子的能量态。采用变分蒙特卡罗算法得到最佳拟合模型参数,其中相对均方误差(称为卡方值)最小。利用Woods-Saxon势得到的通用参数与文献报道的数据相匹配,中子态和质子态的卡方值分别为0.066和0.069,而考虑汤川势得到的中子态和质子态的卡方值分别为1.98和1.57。为了进一步评估这两种相互作用势的性能,对三种不同的原子核进行了模型参数优化,分别是轻核(16O - 56Ni)、重核(100Sn - 208Pb)和所有核(16O - 208Pb)。我们观察到汤川模型对轻核的表现相当好,但对其他两组的结果不满意,而伍兹-撒克逊势对周期表上所有的幻核都能给出满意的结果。
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Comparative Analysis of Woods-Saxon and Yukawa Model Nuclear Potentials
In this paper, we model the nuclear potential using Woods-Saxon and Yukawa interaction as the mean field in which each nucleon experiences a central force due to rest of the nucleons. The single particle energy states are obtained by solving the time independent Schrodinger wave equation using matrix diagonalization method with infinite spherical well wave-functions as the basis. The best fit model parameters are obtained by using variational Monte-Carlo algorithm wherein the relative mean-squared error, christened as chi-squared value, is minimized. The universal parameters obtained using Woods-Saxon potential are found to be matched with literature reported data resulting a chi-square value of 0.066 for neutron states and 0.069 for proton states whereas the chi-square value comes out to be 1.98 and 1.57 for neutron and proton states respectively by considering Yukawa potential. To further assess the performance of both the interaction potentials, the model parameters have been optimized for three different groups, light nuclei up to 16O - 56Ni, heavy nuclei 100Sn - 208Pb and all nuclei 16O - 208Pb. It is observed that Yukawa model performed reasonably well for light nuclei but did not give satisfactory results for the other two groups while Woods-Saxon potential gives satisfactory results for all magic nuclei across the periodic table. 
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