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Optimization of finite-length input volume holographic grating couplers illuminated by finite-width incident beams

机译:有限宽度入射光束照射的有限长度输入体全息光栅耦合器的优化

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摘要

A finite volume holographic grating coupler (VHGC) normally illuminated with various incident-beam profiles (such as a Gaussian beam, a flat cosine-squared beam, and an exponential-decay beam) with finite beam widths for input coupling is rigorously analyzed by use of the finite-difference frequency-domain method. The effects of the incident-beam width, the incident-beam position, the incident-beam profile, and the incident-beam angle of incidence on the input coupling efficiency are investigated. The optimum conditions for input coupling are determined. Both a VHGC embedded in the waveguide film region and a VHGC placed in the waveguide cover region are investigated. For a given finite VHGC, the input coupling efficiencies are strongly dependent on incident-beam widths, incident-beam positions, and incident-beam angles of incidence, but are only weakly dependent on incident-beam profiles. (c) 2005 Optical Society of America.
机译:严格分析了通常使用各种入射光束轮廓(例如高斯光束,平坦余弦平方光束和指数衰减光束)的有限体积全息光栅耦合器(VHGC),该光束具有有限的光束宽度以用于输入耦合有限差分频域方法研究了入射光束宽度,入射光束位置,入射光束轮廓和入射光束入射角对输入耦合效率的影响。确定输入耦合的最佳条件。研究了嵌入在波导膜区域中的VHGC和置于波导覆盖区域中的VHGC。对于给定的有限VHGC,输入耦合效率在很大程度上取决于入射光束的宽度,入射光束的位置和入射光束的入射角,但仅与入射光束的轮廓无关。 (c)2005年美国眼镜学会。

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