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Angular sensitivities of volume gratings for substrate-mode optical interconnects

机译:衬底模式光学互连的体光栅的角灵敏度

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摘要

The angular sensitivities of slanted volume gratings (VGs) illuminated by three-dimensional (3-D) converging-diverging spherical Gaussian beams for substrate-mode optical interconnects in microelectronics are analyzed by application of 3-D finite-beam rigorous coupled-wave analysis. Angular misalignments about the z, y, and x axes that correspond to yaw, pitch, and roll misalignments resulting from manufacturing tolerances of chips are investigated. Two cases of linear polarization of the central beam of the Gaussian are considered: E perpendicular to K and H perpendicular to K, where K is the grating vector. From worst-case manufacturing tolerances, the ranges of yaw, pitch, and roll misalignment angles are alpha = +/- 1.17 degrees, beta = +/- 3.04 degrees, and gamma = +/- 3.04 degrees, respectively. Based on these ranges of misalignment angles, the decreases of diffraction efficiencies for slanted VGs that are due to both the yaw and the roll misalignments are relatively small. However, the efficiency of substrate-mode optical interconnects achieved by slanted VGs could be reduced by 61.04% for E perpendicular to K polarization and by 58.63% for H perpendicular to K polarization because of the pitch misalignment. Thus the performance of a VG optical interconnect is most sensitive to pitch misalignment. (c) 2005 Optical Society of America.
机译:应用3D有限束严格耦合波分析法,对微电子学中用于衬底电子光学互连的三维(3-D)会聚-发散球面高斯光束照射的倾斜体光栅(VG)的角灵敏度进行了分析。 。研究了由于芯片的制造公差而导致的与偏航,俯仰和横滚失准相对应的围绕z,y和x轴的角失准。考虑了高斯中心光束线性极化的两种情况:垂直于K的E和垂直于K的H,其中K是光栅矢量。从最坏情况的制造公差来看,偏航角,俯仰角和侧倾失准角的范围分别为alpha = +/- 1.17度,beta = +/- 3.04度和gamma = +/- 3.04度。基于这些未对准角度范围,由于偏航和侧倾未对准而导致的倾斜VG的衍射效率降低相对较小。但是,由于螺距未对准,通过倾斜的VG实现的基板模式光学互连的效率,对于垂直于K偏振的E可以降低61.04%,对于垂直于K偏振的H可以降低58.63%。因此,VG光学互连的性能对间距未对准最敏感。 (c)2005年美国眼镜学会。

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