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Design and fabrication of a polarization-independent two-port beam splitter

机译:与偏振无关的二端口分束器的设计与制造

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We design and manufacture a fused-silica polarization-independent two-port beam splitter grating. The physical mechanism of this deeply etched grating can be shown clearly by using the simplified modal method with consideration of corresponding accumulated phase difference of two excited propagating grating modes, which illustrates that the binary-phase fused-silica grating structure depends little on the incident wavelength, but mainly on the ratio of groove depth to grating period and the ratio of incident wavelength to grating period. These analytic results would also be very helpful for wavelength bandwidth analysis. The exact grating profile is optimized by using the rigorous coupled-wave analysis. Holographic recording technology and inductively coupled plasma etching are used to manufacture the fused-silica grating. Experimental results agree well with the theoretical values.
机译:我们设计和制造与熔融石英偏振无关的两端口分束器光栅。考虑到两个激发传播光栅模式相应的累积相位差,可以使用简化模态方法清楚地显示该深蚀刻光栅的物理机理,这表明二元相熔融石英光栅结构对入射波长的依赖性很小。 ,但主要取决于凹槽深度与光栅周期的比以及入射波长与光栅周期的比。这些分析结果对于波长带宽分析也将非常有帮助。精确的光栅轮廓通过使用严格的耦合波分析进行了优化。全息记录技术和电感耦合等离子体蚀刻被用于制造熔融石英光栅。实验结果与理论值吻合良好。

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