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Behavior of a spin-1/2 massive charged particle in Schwarzschild immersed in an electromagnetic universe

机译:Schwarzschild浸入电磁宇宙中的Spin-1/2大量带电粒子的行为

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摘要

The Dirac equation is considered in a spacetime that represents a Schwarzschild metric coupled to a uniform external electromagnetic field. Due to the presence of electromagnetic field from the surroundings, the interaction with the spin-1/2 massive charged particle is considered. The equations of the spin-1/2 massive charged particle are separated into radial and angular equations by adopting the Newman-Penrose formalism. The angular equations obtained are similar to the Schwarzschild geometry. For the radial equations we manage to obtain the one dimensional Schrodinger-type wave equations with effective potentials. Finally, we study the behavior of the potentials by plotting them as a function of radial distance and expose the effect of the external parameter, charge and the frequency of the particle on them.
机译:DIDAC方程被认为是一种时空,其表示耦合到均匀外部电磁场的Schwarzschild度量。 由于存在来自周围环境的电磁场,考虑与旋转1/2大量带电粒子的相互作用。 通过采用纽曼 - 彭罗斯形式主义,旋转1/2大量带电粒子的等式分离成径向和角度方程。 获得的角度方程类似于Schwarzschild几何形状。 对于我们设法的辐射方程,以获得具有有效潜力的一维施罗登型波方程。 最后,我们通过作为径向距离的函数绘制潜力的行为,并暴露外部参数,电荷和粒子频率的效果。

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