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Cascaded Multimode Interference-Based 1x2 Light Splitter for Photonic Integrated Circuits

机译:基于级联的多模干扰1x2光分离器,用于光子集成电路

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A new light splitter based on multimode interference is proposed and demonstrated. Its length is shorter that standard MMI 1x2 splitter for most practical waveguide platforms/dimensions in the InP material system. The difference in length becomes drastic for higher output waveguide spacings and lower access waveguide widths, and the cascaded splitter can be as much as 50% shorter. Furthermore, the cascaded splitter is about 50% narrower, therefore reducing the overall device size by more than 50%. This splitter can also be used to replace standard splitter-bend combinations on PICs, while having comparable length and lower scattering losses. Low losses are possible due to the fact that cascaded MMI splitter can be fabricated using selective wet crystalographic etching, as opposed to reactive ion etching used to create curved waveguides. These characteristics make the cascaded splitter suitable for realization of Mach Zehnder and Michelson interferometers for low cost wavelength converters and modulators, as well as for devices using heterodyne detection. Simulations show and preliminary measurements confirm that this device has large optical bandwidth (1 dB over 80 nm) and low inherent loss of 0.37dB.
机译:提出并展示了一种基于多模干扰的新光分路器。它的长度较短,标准MMI 1x2分离器用于INP材料系统中最实用的波导平台/尺寸。对于更高输出波导间距和较低的接入波导宽度,长度的差异变得急剧,并且级联分离器可以高达50%较短。此外,级联分离器窄幅约为50%,因此将整个装置尺寸降低超过50%。该分配器还可用于在PIC上替换标准分离器弯曲组合,同时具有可比的长度和较低的散射损耗。由于可以使用选择性湿式的蚀刻可以制造级联MMI分离器,而不是用于产生弯曲波导的反应离子蚀刻,因此可能是可能的低损耗。这些特性使级联分离器适用于实现Mach Zehnder和Michelson干涉仪的低成本波长转换器和调制器,以及使用外差检测的装置。仿真显示和初步测量确认该设备具有大的光学带宽(1 dB以上超过80nm),其固有损耗为0.37dB。

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