Jisha Chandroth P, Alberucci Alessandro
J Opt Soc Am A Opt Image Sci Vis. 2017 Nov 1;34(11):2019-2024. doi: 10.1364/JOSAA.34.002019.
We discuss the paraxial approximation for optical waves propagating in a uniaxial anisotropic medium inhomogeneously twisted on the plane normal to the wave vector, with the latter being parallel to one of the two principal axes normal to the optic axis. Such geometry implies a continuous power transfer between the ordinary and extraordinary components, regardless of the input beam polarization. We pinpoint that this peculiar feature, generalizable to any inhomogeneous linear birefringent material, strongly affects the application of the paraxial approximation due to the simultaneous presence of two different phase velocities. We eventually show that a local coordinate transformation permits a correct application of the paraxial approximation.
我们讨论了光波在单轴各向异性介质中传播时的傍轴近似,该介质在垂直于波矢的平面上呈非均匀扭曲,且波矢平行于垂直于光轴的两个主轴之一。这种几何结构意味着寻常分量和非寻常分量之间存在连续的功率转移,而与输入光束的偏振无关。我们指出,这种特殊特性可推广到任何非均匀线性双折射材料,由于同时存在两种不同的相速度,它会强烈影响傍轴近似的应用。我们最终表明,局部坐标变换允许正确应用傍轴近似。