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Advances in Interfacing Optical Fibers to Nanophotonic Waveguides Via Mechanically Compliant Polymer Waveguides

机译:通过机械兼容的聚合物波导将光纤接口到纳米光波导的进展

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摘要

Interfacing standard optical fibers with high index-contrast photonic waveguides remains a substantial challenge restricting the cost-efficiency and scalability of silicon photonic devices. To address this, we have proposed a mechanically compliant polymer interface, formed of a standard fiber connection and a flexible ribbon with lithographically defined polymer waveguides. Self-aligned mechanical assembly and optical mode evolution designs are employed for low cost and large spectral bandwidth. In this paper, we review our progress leading to the full demonstration of this concept with -1.8 dB peak transmission from a plugged-in standard fiber connector to Si wire waveguides. This with 0.7 dB roll-off on a 100 nm bandwidth and all polarization. We present a comprehensive analysis of loss sources and discuss intermediate results, self-alignment accuracy, and reliability.
机译:具有高指标对比光子波导的连接标准光纤仍然是限制硅光子器件的成本效率和可扩展性的大量挑战。 为了解决这个问题,我们已经提出了一种机械柔顺的聚合物界面,由标准纤维连接和具有光刻定义的聚合物波导的柔性带形成。 自对准机械组件和光学模式演化设计用于低成本和大的光谱带宽。 在本文中,我们审查了我们的进展,导致这一概念的完整演示 - 从插入标准光纤连接器到Si Wire波导的-1.8 DB峰值传输。 这在100nm带宽和所有极化上的0.7 dB滚动。 我们对损耗来源进行了全面的分析,并讨论了中间结果,自对准精度和可靠性。

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