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Harnessing Sub-Wavelength and Symmetry Engineering for the Implementation of High-Performance Silicon Bragg Grating Filters

机译:利用亚波长和对称工程实现高性能硅布拉格光栅滤波器

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Bragg filters stand as a key building blocks of the silicon-on-insulator (SOI) photonics platform, allowing the implementation of advanced on-chip signal manipulation. However, achieving narrowband Bragg filters with large rejection levels is often hindered by fabrication constraints and imperfections. Here, we present a new generation of high-performance Bragg filters that exploit subwavelength and symmetry engineering to overcome bandwidth-rejection trade-off in state-of-the-art implementations. We experimentally show flexible control over the width and depth of the Bragg resonance. These results pave the way for the implementation of high-performance on-chip pump-rejection filters with a great potential for Si-based quantum photonic circuits.
机译:布拉格滤波器是绝缘体上硅(SOI)光子学平台的重要组成部分,可实现高级片上信号处理。然而,通常由于制造限制和缺陷而阻碍获得具有大抑制水平的窄带布拉格滤波器。在这里,我们介绍了新一代高性能布拉格滤波器,该滤波器利用亚波长和对称工程技术来克服最新实现中的带宽抑制权衡问题。我们通过实验显示了对布拉格共振的宽度和深度的灵活控制。这些结果为高性能的片上泵浦拒绝滤波器的实现铺平了道路,这对基于硅的量子光子电路具有巨大的潜力。

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