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An Efficient Method for Obtaining the Binding Energy of the Lithium Nucleus under Singular Short-Range Potentials

机译:奇异短程电势下获得锂核结合能的有效方法

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摘要

In this paper, the binding energy of the lithium nucleus in a nonrelativistic model is obtained for singular short-range potentials such as the Hulthen and the inversely quadratic Yukawa Potential. In order to do that, we used the concept of the supersymmetry method to solve the Schrodinger equation exactly analytically. These potentials, due to their physical interpretations, are of interest within many areas of theoretical physics. The results of our model for all calculations show that the ground state binding energy of the lithium nucleus with these potentials is very close to that obtained experimentally.
机译:在本文中,获得了非相对论模型中锂核的结合能,该非相对论性模型是针对诸如Hulthen和逆二次汤河势等奇异的短程电势。为此,我们使用超对称方法的概念来精确地解析求解薛定solve方程。由于它们的物理解释,这些潜能在理论物理学的许多领域都令人感兴趣。我们模型的所有计算结果表明,具有这些电势的锂核的基态结合能与实验获得的非常接近。

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