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Optical Characterization of 9 x 9 Optical Cross Connect utilizing Silicon Lens Scanners with Spider-leg Actuators

机译:9 x 9光学交叉连接的光学特性,该光学交叉连接使用硅透镜扫描仪和蜘蛛腿致动器

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摘要

This paper presents a 9x9 OXC (Optical Cross Connect) utilizing two-dimensional micro-lens scanners, each of which consists of eight 'L' shaped (spider-leg) stage-suspension springs and rotational comb-drive actuators. Silicon was used as a lens material because of the mechanical stability and optical transparency to infrared wavelength of 1.55 μm. The micro lens scanner was fabricated by lens-profile-transferring to the structural layer of an SOI wafer by the RIE (reactive ion etching) from thermally reflowed photoresist. The XY stage moved more than 55 μm independently in the X and Y directions with applied voltage of 65 V. In optical measurement, the coupling loss was 13 dB, and channel uniformity of 9x9 OXC was less than 4.5 dB.
机译:本文介绍了一种利用二维微透镜扫描仪的9x9 OXC(光学交叉连接),每个扫描仪均由八个“ L”形(蜘蛛腿)级悬架弹簧和旋转梳状驱动致动器组成。硅被用作透镜材料是因为其机械稳定性和对1.55μm红外波长的光学透明性。通过用热回流光致抗蚀剂通过RIE(反应离子蚀刻)将透镜轮廓转移到SOI晶片的结构层来制造微透镜扫描仪。 XY平台在施加65 V电压时独立地在X和Y方向上移动超过55μm。在光学测量中,耦合损耗为13 dB,9x9 OXC的通道均匀度小于4.5 dB。

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