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Three-dimensional Analysis Of Light Transmittance In Many Optical Spheroids

机译:许多光学球体的透光率的三维分析

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This paper describes the optical transmittance of many optical spheroids arranged on a straight line, which have analogy with tiny bubbles existing in liquid. By using an analytical method proposed by the authors, the optical transmittance has been computed under each optical spheroid being rotated by a small angle. Here, the size of optical spheroid and the gap distance between adjacent spheroids are mainly considered. The present analytical computation brings such an optical condition as light can be effectively transmitted through many optical spheroids. The maximum transmittance of light reaching 100% is realized under the following conditions where the size of optical spheroid (e_x, e_v, e_z) is (1.0168, 1.02, 1.0), the normalized gap length between adjacent optical spheroids is 0.15 to 0.16 or 0.185, and the rotation angles of θ and φ are 0.51 ° and 0°, respectively.
机译:本文描述了许多排列成直线的光学球体的透光率,它们类似于液体中存在的微小气泡。通过使用作者提出的分析方法,已经在每个光学球体以小角度旋转的情况下计算了光学透射率。在此,主要考虑光学球体的尺寸和相邻球体之间的间隙距离。本分析计算带来了这样的光学条件,因为光可以有效地通过许多光学球体传输。在以下条件下实现最大光透射率达到100%,其中光学球体(e_x,e_v,e_z)的尺寸为(1.0168,1.02,1.0),相邻光学球体之间的归一化间隙长度为0.15至0.16或0.185 ,旋转角θ和φ分别为0.51°和0°。

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