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Side-mode suppressed filter based on an angular grating-subwavelength grating microring resonator with high flexibility in wavelength design

机译:基于具有高柔韧性波长设计的角光栅 - 子波长光栅微管谐振器的侧模抑制滤波器

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摘要

The subwavelength grating microring resonator (SWGMRR)-based filter is a promising device in optical sensing and communication. However, its comb spectrum nature is not suitable for the track or extraction of a single wavelength of a broadband light source. In this paper, we propose a silicon-photonic side-mode suppressed filter based on angular grating-SWGMRR (AG-SWGMRR) with high flexibility in wavelength design in the silicon-on-insulator (SOI) waveguide for the first time. With the periodical arrangement of the silicon pillars in three different widths, the effective index along the inner sidewall of the SWGMRR will be engineered and, finally, the characteristic of wavelength selection can be realized. The impacts of several key parameters on the center wavelength, side-mode suppressed ratio, and quality factor of this filter, as well as the process of optimization, are investigated and presented, giving a constructive direction in the design of this kind of structure. The simulated results in bulk sensing application indicate that this AG-SWGMRR obtains a high sensitivity of 672.8 nm/RIU and a low limit of detection of 6.69 x 10(-5), which is not restricted by the free spectral range for its side-mode suppression. Additionally, a cascaded system for wavelength multiplexing applications comprising six AGSWGMRRs with different center wavelengths by tuning the widths of silicon pillars is also demonstrated. The good performance, compact volume, compatibility with other SWG waveguide-based devices, and flexibility in design of our proposed structure guarantee its great potential in both compact biomedical sensing and optical communication systems. (C) 2019 Optical Society of America
机译:基长光栅微管谐振器(SWGMRR)基于光学感测和通信的有希望的装置。然而,其梳状谱性质不适合于宽带光源的单个波长的轨道或提取。在本文中,我们首次提出基于角光栅-WGMRR(AG-SWGMRR)的硅 - 光子侧模抑制滤波器,这是第一次在绝缘体(SOI)波导中具有高灵活性的角度光栅-WGMRR(AG-SWGMRR)。利用三种不同宽度的硅柱的周期性布置,将设计沿着SWGMRR的内侧壁的有效指数,最后,可以实现波长选择的特性。研究并提出了几个关键参数对该过滤器的中心波长,侧面抑制比和质量因子的影响,以及优化过程,在这种结构的设计中提供了建设性方向。批量传感施用中的模拟结果表明该AG-SWGMRR为672.8nm / Riu的高灵敏度和6.69×10(-5)的低限制,这不受其侧面的自由谱范围的限制模式抑制。另外,还证明了通过调节硅柱的宽度的具有不同中心波长的六个AGSWGMRR的波长复用应用的级联系统。良好的性能,紧凑的体积,与其他基于SWG波导的设备的兼容性,以及我们所提出的结构设计的灵活性能够在紧凑的生物医学传感和光学通信系统中保证其巨大潜力。 (c)2019年光学学会

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  • 来源
    《Applied optics》 |2019年第26期|共7页
  • 作者

    Wu Nishan; Xia Li;

  • 作者单位

    Huazhong Univ Sci &

    Technol Sch Opt &

    Elect Informat Wuhan 430074 Hubei Peoples R China;

    Huazhong Univ Sci &

    Technol Sch Opt &

    Elect Informat Wuhan 430074 Hubei Peoples R China;

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  • 正文语种 eng
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