Gravitoelectromagnetism (GEM) is an approach for the gravitation field that is described using the formulation and terminology similar to that of electromagnetism. The Lorentz violation is considered in the formulation of GEM that is covariant in its form. In practice such a small violation of the Lorentz symmetry may be expected in a unified theory at very high energy. In this paper a non-minimal coupling term, which exhibits Lorentz violation, is added as a new term in the covariant form. The differential cross section for Bhabha scattering in the GEM framework at finite temperature is calculated that includes Lorentz violation. The Thermo Field Dynamics (TFD) formalism is used to calculate the total differential cross section at finite temperature. The contribution due to Lorentz violation is isolated from the total cross section. It is found to be small in magnitude.
翻译:引力场是一种方法,它使用与电磁学相似的配方和术语来描述引力场。Lorentz的违规情况在以其形式形成的GEM的配方中加以考虑。实际上,在能量非常高的统一理论中,可以预期如此小的违反Lorentz的对称性。在本文中,以共变形式添加了一个显示违反Lorentz的非最小联动术语,作为新的术语。在GEM框架中以有限温度散布Bhabha的Bhabha的差分交叉部分计算,包括Lorentz的违反情况。使用热场动态(TFD)形式主义来计算在有限温度下的总差交叉部分。Lorentz的违规情况与总交叉部分隔绝。发现其规模较小。