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Optical propagation in uniaxial crystals orthogonal to the optical axis: paraxial theory and beyond

机译:与光轴正交的单轴晶体中的光传播:近轴理论及以后

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We describe monochromatic light propagation in uniaxial crystals by means of an exact solution of Maxwell's equations. We subsequently develop a paraxial scheme for describing a beam traveling orthogonal to the optical axis. We show that the Cartesian field components parallel and orthogonal to the optical axis are extraordinary and ordinary, respectively, and hence uncoupled. The ordinary component exhibits a standard Fresnel behavior, whereas the extraordinary one exhibits interesting anisotropic diffraction dynamics. We interpret the anisotropic diffraction as a composition of two spatial geometrical affinities and a single Fresnel propagation step. As an application, we obtain the analytical expression of the extraordinary Gaussian beam. We then derive the first nonparaxial correction to the paraxial beam, thus giving a scheme for describing slightly nonparaxial fields. We find that nonparaxiality couples the Cartesian components of the field and that the resultant longitudinal component is greater than the correction to the transverse component orthogonal to the optical axis. Finally, we derive the analytical expression for the nonparaxial correction to the paraxial Gaussian beam.
机译:我们通过麦克斯韦方程组的精确解来描述单色光在单轴晶体中的传播。随后,我们开发了一个近轴方案来描述与光轴正交的光束。我们表明,与光轴平行和正交的笛卡尔场分量分别是非寻常的和寻常的,因此是不耦合的。普通组分表现出标准的菲涅耳行为,而非常规组分表现出有趣的各向异性衍射动力学。我们将各向异性衍射解释为两个空间几何亲和力和单个菲涅耳传播步骤的组合。作为应用,我们获得了非常规高斯光束的解析表达式。然后,我们将第一个非傍轴校正导出到傍轴光束,从而给出一种描述轻微非傍轴场的方案。我们发现,非傍轴性将场的笛卡尔分量耦合,并且所得的纵向分量大于对正交于光轴的横向分量的校正。最后,我们导出了对近轴高斯光束的非近轴校正的解析表达式。

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