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首页> 外文期刊>Advances in high energy physics >Relativistic Energy Analysis of Five-Dimensional q-Deformed Radial Rosen-Morse Potential Combined with q-Deformed Trigonometric Scarf Noncentral Potential Using Asymptotic Iteration Method
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Relativistic Energy Analysis of Five-Dimensional q-Deformed Radial Rosen-Morse Potential Combined with q-Deformed Trigonometric Scarf Noncentral Potential Using Asymptotic Iteration Method

机译:渐近迭代法分析五维q变形径向Rosen-Morse电势与q变形三角围巾非中心势的相对论能量

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摘要

We study the exact solution of Dirac equation in the hyperspherical coordinate under influence of separable q-deformed quantumpotentials. The q-deformed hyperbolic Rosen-Morse potential is perturbed by q-deformed noncentral trigonometric Scarf potentials, where all of them can be solved by using Asymptotic Iteration Method (AIM). This work is limited to spin symmetry case. The relativistic energy equation and orbital quantum number equation l(D-1) have been obtained using Asymptotic Iteration Method. The upper radial wave function equations and angular wave function equations are also obtained by using this method. The relativistic energy levels are numerically calculated using Matlab, and the increase of radial quantum number.. causes the increase of bound state relativistic energy level in both dimensions D = 5 and D = 3. The bound state relativistic energy level decreases with increasing of both deformation parameter q and orbital quantum number n(l).
机译:我们研究了可分离的q形变量子势在超球坐标下Dirac方程的精确解。 q变形的非中心三角Scarf势势会扰动q变形的双曲Rosen-Morse势,可以使用渐近迭代法(AIM)求解所有这些势。这项工作仅限于自旋对称的情况。利用渐近迭代法得到了相对论能量方程和轨道量子数方程l(D-1)。使用该方法还可以得到上径向波函数方程和角波函数方程。相对论能级是用Matlab数值计算的,径向量子数的增加导致D = 5和D = 3的束缚态相对论能级都增加。形变参数q和轨道量子数n(l)。

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