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Planar waveguide integrated spatial filter array

机译:平面波导集成空间滤波器阵列

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An innovative integrated spatial filter array (iSFA) was developed for the nulling interferometer for the detection of earth-like planets and life beyond our solar system. The coherent iSFA comprised a 2D planar lightwave circuit (PLC) array coupled with a pair of 2D lenslet arrays in a hexagonal grid to achieve the optimum fill factor and throughput. The silica-on-silicon waveguide mode field diameter and numerical aperture (NA) were designed to match with the Airy disc and NA of the microlens for optimum coupling. The lenslet array was coated with a chromium pinhole array at the focal plane to pass the single-mode waveguide but attenuate the higher modes. We assembled a 32 by 30 array by stacking 32 chips that were produced by photolithography from a 6-in. silicon wafer. Each chip has 30 planar waveguides. The PLC array is inherently polarization-maintaining (PM) and requires much less alignment in contrast to a fiber array, where each PM fiber must be placed individually and oriented correctly. The PLC array offers better scalability than the fiber bundle array for large arrays of over 1,000 waveguides.
机译:开发了一种创新的集成空间滤波器阵列(ISFA),用于检测到我们太阳系之外的地球状行星和寿命的缺斑干涉仪。相干的ISFA包括与六边形网格中的一对2D透镜阵列耦合的2D平面光波电路(PLC)阵列,以实现最佳的填充因子和吞吐量。设计二氧化硅 - 硅波导模式场直径和数值孔径(NA)设计成与微透镜的通风盘和Na匹配,以实现最佳耦合。透镜阵列在焦平面上涂有铬针孔阵列,以通过单模波导,但衰减更高的模式。我们通过堆叠32个芯片通过从6英寸的光刻堆叠来组装32乘以30阵列。硅晶片。每个芯片都有30个平面波导。 PLC阵列固有地保持偏振 - 保持(PM),并且与光纤阵列相比,需要更少的对准,其中每个PM光纤必须单独放置并正确定向。 PLC阵列提供比大型1000多个波导阵列的纤维束阵列更好的可扩展性。

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