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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Generalization of ray tracing in a linear inhomogeneous anisotropic medium: a coordinate-free approach
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Generalization of ray tracing in a linear inhomogeneous anisotropic medium: a coordinate-free approach

机译:线性非均匀各向异性介质中的射线追踪泛化:无坐标方法

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摘要

The Hamiltonian of an optical medium is important in both the design and the description of optical devices in the geometrical optics limit. The results calculated in this article show in detail how ray tracing in anisotropic materials in arbitrary coordinate systems and curved spaces can be carried out. Writing Maxwell's equations in the most general form, we derive a coordinate-free form for the eikonal equation and hence the Hamiltonian of a general purpose medium. The expression works for both orthogonal and non-orthogonal coordinate systems, and we show how it can be simplified for biaxial and uniaxial media in orthogonal coordinate systems. In order to show the utility of the equations in a real case, we study both the isotropic and the uniaxially transmuted birefringent Eaton lens and derive the ray trajectories in spherical coordinates for each case.
机译:光学介质的哈密顿量在几何光学极限中对光学设备的设计和描述中都非常重要。本文计算的结果详细显示了如何在任意坐标系和弯曲空间中进行各向异性材料中的光线追踪。用最通用的形式写麦克斯韦方程,我们推导了本征方程的无坐标形式,从而得出了通用介质的哈密顿量。该表达式适用于正交坐标系和非正交坐标系,并且我们展示了如何在正交坐标系中将其简化为双轴和单轴介质。为了显示方程在实际情况下的实用性,我们研究了各向同性和单轴变换的双折射伊顿透镜,并得出了每种情况下球面坐标系下的射线轨迹。

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