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On the harmonic-type and linear-type confinement of a relativistic scalar particle yielded by Lorentz symmetry breaking effects

机译:关于洛伦兹对称破坏效应产生的相对论标量粒子的谐波型和线性型约束

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摘要

Based on the Standard Model Extension, we investigate relativistic quantum effects on a scalar particle in backgrounds of the Lorentz symmetry violation defined by a tensor field. We show that harmonic-type and linear-type confining potentials can stem from Lorentz symmetry breaking effects, and thus, relativistic bound state solutions can be achieved. We first analyse a possible scenario of the violation of the Lorentz symmetry that gives rise to a harmonic-type potential. In the following, we analyse another possible scenario of the breaking of the Lorentz symmetry that induces both harmonic-type and linear-type confining potentials. In this second case, we also show that not all values of the parameter associated with the intensity of the electric field are permitted in the search for polynomial solutions to the radial equation, where the possible values of this parameter are determined by the quantum numbers of the system and the parameters associated with the violation of the Lorentz symmetry. (C) 2016 Elsevier Inc. All rights reserved.
机译:基于标准模型扩展,我们研究由张量场定义的洛伦兹对称性违背背景下标量粒子上的相对论量子效应。我们表明,谐波型和线性型约束势能源于洛伦兹对称破坏效应,因此,可以实现相对论的束缚态解。我们首先分析违反洛伦兹对称性的可能情形,该情形会引起谐波型电势。在下文中,我们分析了破坏Lorentz对称性的另一种可能情况,这种情况会同时诱发谐波型和线性型约束电位。在第二种情况下,我们还表明,在搜索径向方程的多项式解时,并非所有与电场强度相关的参数值都被允许,其中该参数的可能值由的量子数确定。与违反洛伦兹对称性相关的系统和参数。 (C)2016 Elsevier Inc.保留所有权利。

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