Improving low-dispersion bandwidth of the silicon photonic crystal waveguides for ultrafast integrated photonics

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Abstract

We design a novel slow-light silicon photonic crystal waveguide which can operate over an extremely wide flat band for ultrafast integrated nonlinear photonics. By conveniently adjusting the radii and positions of the second air-holes rows, a flat slow-light low-dispersion band of 50 nm is achieved numerically. Such a slow-light photonic crystal waveguide with large flat low-dispersion wideband will pave the way for governing the femtosecond pulses in integrated nonlinear photonic platforms based on CMOS technology.

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Pan, J., Fu, M., Yi, W., Wang, X., Liu, J., Zhu, M., … Li, X. (2021). Improving low-dispersion bandwidth of the silicon photonic crystal waveguides for ultrafast integrated photonics. Photonics, 8(4). https://doi.org/10.3390/photonics8040105

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