首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Wave surfaces and wave velocities in optics of non-absorbing optically active media
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Wave surfaces and wave velocities in optics of non-absorbing optically active media

机译:非吸收性光学活性介质的光学器件中的波面和波速

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摘要

General relations between phase normal vectors, refraction vectors and ray refraction vectors as well as between phase and ray velocities of plane waves are obtained for linear non-absorbing optically active (bianisotropic) media. For such media the geometric constraint on the wave surfaces is discussed. Equality of the group and ray velocities of the monochromatic plane waves in dispersive bianisotropic media is proven. It is shown that the degree of the ray surface equation generally exceeds the degree of the refraction surface and phase velocity surface equations but it cannot be greater than 108. In particular, for gyrotropic dielectric media of symmetry classes 3, 3, 4, 4, 4/m, 6, 6 and 6/m it equals 12. The domain of applicability of the duality principle known in optics of anisotropic media is determined.
机译:对于线性非吸收性光学活性(各向异性)介质,可以获得相位法向矢量,折射矢量和射线折射矢量之间以及平面波的相位和射线速度之间的一般关系。对于这种介质,讨论了在波表面上的几何约束。单色平面波在色散各向异性介质中的群速度和射线速度相等。结果表明,射线表面方程的阶数通常超过折射表面方程和相速度表面方程的阶数,但不能大于108。特别是,对于对称类3、3、4、4的回旋介电介质4 / m,6、6和6 / m等于12。确定了各向异性介质光学中已知的对偶原理的适用范围。

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