首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Eikonal equation for a general anisotropic or chiral medium: application to a negative-graded index-of-refraction lens with an anisotropic material
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Eikonal equation for a general anisotropic or chiral medium: application to a negative-graded index-of-refraction lens with an anisotropic material

机译:一般各向异性或手性介质的Eikonal方程:应用于具有各向异性材料的负渐变折射率透镜

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We discuss the numerical simulation of a graded refractive index (GRIN) lens with a general anisotropic medium and compare it with an equivalent nongraded positive-index-of-refraction-material (PIM) lens with an isotropic medium. To evaluate lens performance, we developed a modified eikonal equation valid for the most general form of an anisotropic or chiral medium. Our approach is more comprehensive than previous work in this area and is obtained from the dispersion relation of Maxwell's equations in the eikonal approximation. The software developed for the numerical integration of the modified eikonal equation is described. Subsequently, a full finite-difference time-dependent simulation was performed to verify the validity of the eikonal calculations. The performance of the GRIN lens is found to be improved over the equivalent PIM one. The GRIN lens is also five to ten times lighter than the equivalent PIM. A GRIN lens operating at 15 GHz is now under fabrication at Boeing, and the experimental results of this lens will be reported in a forthcoming paper. (c) 2006 Optical Society of America.
机译:我们讨论了具有普通各向异性介质的渐变折射率(GRIN)透镜的数值模拟,并将其与具有各向同性介质的等效非渐变正折射率材料(PIM)透镜进行了比较。为了评估镜片性能,我们开发了适用于各向异性或手性介质最一般形式的改进的电子方程。我们的方法比该领域以前的工作更全面,并且可以通过麦克斯韦方程组的近似关系的色散关系获得。描述了为修正的电子方程式的数值积分而开发的软件。随后,进行了一个完整的时差有限差分仿真,以验证该精确计算的有效性。发现GRIN透镜的性能优于同等的PIM。 GRIN镜头的亮度也比同等PIM轻五到十倍。波音公司目前正在制造一种工作在15 GHz的GRIN透镜,该透镜的实验结果将在即将发表的论文中进行报道。 (c)2006年美国眼镜学会。

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