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Realizing multi-functional all-optical data processing on nanoscale SiC waveguides

机译:在纳米级SiC波导上实现多功能全光数据处理

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摘要

All-optical logics are realized on nanoscale SiC waveguides with add-drop micro-ring functionality, including the TE/TM polarized data decoding, the dual-port Kerr switching and gating beyond 12 Gbit/s. With employing the C-C bond enriched SiC thin film upon thermal oxide, the nonlinear refractive index of up to 2.44 × 10−12 cm2/W enables the asymmetric waveguide with polarization distinguishable transmission, which provides a polarization-selectivity to discreminate the TE/TM polarized data decoding with an nearly 9-dB extinction ratio. The TE/TM polarized decoding performance is comparable with a state-of-the-art fiberized in-line polarizer. The complementary transmission in the bus waveguide port facilitates the dual-port Kerr switching for data format conversion/inversion in both add/drop channels. Owing to the TE/TM polarization discriminated throughput, the asymmetric add-drop waveguide micro-ring also permits all-optical AND logic gating functions, where the ON-state outputs only if the pump bit is set at ON state and the probe bit with matched polarization. These results reveal the multi-functionality of the nanoscale SiC add-drop micro-ring waveguide for future photonic logics on chip.
机译:全光逻辑在具有分插微环功能的纳米级SiC波导上实现,包括TE / TM极化数据解码,双端口Kerr切换和超过12 Gbit / s的门控。通过在热氧化物上使用富含CC键的SiC薄膜,非线性折射率高达2.44×10 −12 cm 2 / W可以使偏振不对称的波导区分开传输,提供了极化选择性,以近乎9 dB的消光比来区分TE / TM极化数据解码。 TE / TM偏振解码性能可与先进的光纤同轴偏振器相媲美。总线波导端口中的互补传输有助于双端口Kerr切换,以便在两个添加/删除通道中进行数据格式转换/反转。由于采用了TE / TM极化,因此非对称分插波导微环还具有全光和逻辑门功能,只有在泵位设置为ON状态且探针位设置为ON时,ON状态才输出匹配的极化。这些结果揭示了纳米级SiC分插微环波导的多功能性,可用于未来的片上光子逻辑。

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