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On the Role of Differentiation Parameter in a Bound State Solution of the Klein-Gordon Equation

机译:论差异化参数在克莱因 - 戈登方程的界定状态解中的作用

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Recently, the bound state solutions of a confined Klein-Gordon particle under the mixed scalar-vector generalized symmetric Woods-Saxon potential in one spatial dimension have been investigated. The obtained results reveal that in the spin symmetric limit discrete spectrum exists, while in the pseudo-spin symmetric limit it does not. In this manuscript, new insights and information are given by employing an analogy of the variational principle. The role of the difference of the magnitudes of the vector and scalar potential energies, namely the differentiation parameter, on the energy spectrum is examined. It is observed that the differentiation parameter determines the measure of the energy spectrum density by modifying the confined particle's mass-energy in addition to narrowing the spectrum interval length.
机译:最近,已经研究了在一个空间尺寸下混合标量导航载体广义对称树木撒克逊潜力下的狭窄的Klein-Gordon颗粒的绑定状态解。 所获得的结果表明,存在于旋转对称的离散频谱中,而在伪旋转对称限制中它没有。 在此稿件中,通过使用变分原理的类比给出新的见解和信息。 检查了矢量和标量电位能量的差异,即差异化参数在能量谱上的作用。 观察到,除了缩小频谱间隔长度之外,分化参数除了缩小频谱间隔之外,还通过修改限制粒子的质量能量来确定能量谱密度的量度。

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