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A relativistic wave equation with a local kinetic operator and an energy-dependent effective interaction for the study of hadronic systems

机译:具有局部动力学算子和依赖能量的有效相互作用的相对论波动方程,用于强子系统的研究

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摘要

We study a fully relativistic, two-body, quadratic wave equation for equal mass interacting particles. With this equation the difficulties related to the use of the square roots in the kinetic energy operators are avoided. An energy-dependent effective interaction, also containing quadratic potential operators, is introduced. For pedagogical reasons, it is previously shown that a similar procedure can be also applied to the well-known case of a one-particle Dirac equation. The relationships of our model with other relativistic approaches are briefly discussed. We show that it is possible to write our equation in a covariant form in any reference frame. A generalization is performed to the case of two particles with different mass. We consider some cases of potentials for which analytic solutions can be obtained. We also study a general numerical procedure for solving our equation taking into account the energy-dependent character of the effective interaction. Hadronic physics represents the most relevant field of application of the present model. For this reason we perform, as an example, specific calculations to study the charmonium spectrum. The results show that the adopted equation is able to reproduce with good accuracy the experimental data.
机译:我们研究了等质量相互作用粒子的完全相对论的,两体二次波方程。利用该方程式,避免了与在动能算子中使用平方根相关的困难。引入了一个依赖能量的有效相互作用,其中也包含二次势算子。由于教学上的原因,先前已表明,类似的过程也可以应用于单粒子Dirac方程的众所周知的情况。简要讨论了我们模型与其他相对论方法的关系。我们证明了可以在任何参考系中以协变形式写我们的方程。对具有不同质量的两个粒子的情况进行归纳。我们考虑一些可能获得解析解的情况。我们还研究了一种通用的数值程序来求解方程,同时考虑了有效相互作用的能量依赖性。强子物理学代表了本模型最相关的应用领域。因此,作为示例,我们将进行特定的计算来研究charm的光谱。结果表明,所采用的方程能够很好地再现实验数据。

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