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Broadband High-Efficiency Grating Couplers for Perfectly Vertical Fiber-to-Chip Coupling Enhanced by Fabry-Perot-like Cavity

机译:宽带高效率光栅耦合器采用法布里 - 珀罗般的空腔增强了完美的纤维到芯片耦合器

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摘要

We propose a broadband high-efficiency grating coupler for perfectly vertical fiber-to-chip coupling. The up-reflection is reduced, hence enhanced coupling efficiency is achieved with the help of a Fabry-Perot-like cavity composed of a silicon nitride reflector and the grating itself. With the theory of the Fabry-Perot cavity, the dimensional parameters of the coupler are investigated. With the optimized parameters, up-reflection in the C-band is reduced from 10.6% to 5%, resulting in an enhanced coupling efficiency of 80.3%, with a 1-dB bandwidth of 58 nm, which covers the entire C-band. The minimum feature size of the proposed structure is over 219 nm, which makes our design easy to fabricate through 248 nm deep-UV lithography, and lowers the fabrication cost. The proposed design has potential in efficient and fabrication-tolerant interfacing applications, between off-chip light sources and integrated chips that can be mass-produced.
机译:我们提出了一种宽带高效率光栅耦合器,用于完全垂直的纤维到芯片耦合。 up-反射减小,因此利用由氮化硅反射器和光栅本身组成的法布里 - 射门样腔来实现增强的耦合效率。利用法布里 - 珀罗腔的理论,研究了耦合器的尺寸参数。通过优化的参数,C波段的上反射从10.6%降至5%,导致增强耦合效率为80.3%,具有58nm的1-dB带宽,涵盖整个C波段。所提出的结构的最小特征尺寸超过219nm,这使我们的设计易于制造了248 nm深紫外线光刻,并降低了制造成本。所提出的设计具有高效和制造的耐受性接口应用,在片外光源和可批量生产的集成芯片之间。

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