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Waveguide lenses with multimode interference for low-loss slab propagation

机译:具有多模干涉的波导透镜,可实现低损耗平板传播

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摘要

It is shown that a nearly ideal two-dimensional focusing Gaussian beam can be synthesized by use of a linear combination of the two lowest-order even modes of an optical waveguide. This property can be used to couple laterally guided modes across slab waveguide regions with low loss. The technique is illustrated by use of a conventional multimode interference (MMI) geometry, in which the MMI coupler transforms the fundamental mode of an initial waveguide into a focusing Gaussian beam, which is then fed to a slab region. Two-dimensional beam propagation simulations show that the beam does not initially diverge in the slab region, but rather comes to a focus. A second MMI coupler then transforms the diverging beam back to the initial mode. A structure is designed that can couple the fundamental mode of a 9-μm-wide waveguide across an 88-μm-long slab region with only a 0.036-dB loss. This technique can be applied to improve the performance of small-angle waveguide crossings and integrated turning mirrors.
机译:示出了可以通过使用光波导的两个最低阶偶数模式的线性组合来合成接近理想的二维聚焦高斯光束。此属性可用于以低损耗耦合跨平板波导区域的横向引导模式。通过使用常规的多模干涉(MMI)几何图形来说明该技术,其中MMI耦合器将初始波导的基本模转换为聚焦高斯光束,然后将其馈送到平板区域。二维光束传播仿真表明,光束最初不在平板区域发散,而是成为焦点。然后,第二个MMI耦合器将发散光束转换回初始模式。设计了一种结构,该结构可以将9μm宽的波导的基本模式耦合到88μm长的平板区域上,而损耗仅为0.036dB。该技术可用于改善小角度波导交叉和集成转向镜的性能。

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