论文标题
使用矩阵Numerov方法在Gnumeric工作表中使用矩阵Numerov方法对壳模型单粒子能态的数值模拟
Numerical Simulation of Shell Model Single Particle Energy States using Matrix Numerov Method in Gnumeric Worksheet
论文作者
论文摘要
使用Gnumeric工作表环境获得了核壳模型所述的单个粒子能状态。 Numerov方法以矩阵形式重新塑造,用于在平均场近似中求解时间独立的Schrodinger方程(TISE),由伍德斯 - 撒克逊(WS)势与自旋轨道术语一起描述,以获得中子和质子状态的单个粒子能量。 WS模型参数是从涉及正弦基础的矩阵方法技术进行的先前模拟结果中选择的,其中进行了优化W.R.T可用的实验单粒子能量为208pb和48ca。在本文中,仅对算法参数,步长h和矩阵尺寸N进行了优化,以获得使用矩阵方法获得的预期能级序列。通过将此工具纳入指导性探究策略(一种建构主义的学习方法)的框架中,试图进行尝试,以积极吸引学生分配适当的旋转式配置,以针对与偶然魔术相邻的核的基础状态。已经观察到,与通常从208pb获得的通常获得的能量水平序列相比,可以更好地预测基态构型。
Single particle energy states as described by nuclear shell model are obtained for doubly magic nuclei using Gnumeric worksheet environment. Numerov method rephrased in matrix form is utilised to solve time-independent Schrodinger equation (TISE) within mean-field approximation, described by Woods-Saxon (WS) potential along with spin-orbit term, to obtain the single particle energies for both neutron and proton states. The WS model parameters are chosen from previous simulation results performed using matrix methods technique involving sine basis, where optimization was done w.r.t available experimental single particle energies for 208Pb and 48Ca. In this paper, only the algorithm parameters, step size h and matrix size N are optimized to obtain the expected energy level sequence obtained using matrix methods. An attempt is made, by incorporating this tool within the framework of guided inquiry strategy (a constructivist approach to learning), to actively engage the students in assigning appropriate spin-parity configurations for ground states of nuclei neighbouring the doubly magic ones. It has been observed that the ground state configurations could be better predicted when energy level sequences are known for all nuclei as compared to what is usually obtained from that of 208Pb alone.