• DocumentCode
    22122
  • Title

    Deformed Microdisk-Based End-Fire Injection and Collection Resonant Device

  • Author

    Shuai Liu ; Zhiyuan Gu ; Nan Zhang ; Kaiyang Wang ; Quan Lyu ; Ke Xu ; Shumin Xiao ; Qinghai Song

  • Author_Institution
    Shenzhen Grad. Sch., Dept. of Electron. & Inf. Eng., Harbin Inst. of Technol., Shenzhen, China
  • Volume
    33
  • Issue
    17
  • fYear
    2015
  • fDate
    Sept.1, 1 2015
  • Firstpage
    3698
  • Lastpage
    3703
  • Abstract
    Microring resonators have been the fundamental building blocks of integrated photonic networks. They play key roles in a number of on-chip photonic elements, such as filters, modulators, switches, and sensors. However, the applications of microring resonators in these components are hindered by the evanescent coupling, which requires very precise position control and is hard to be realized in standard photolithography. Here, we demonstrate a novel, general, and robust mechanism to achieve microdisk-based end-fire injection and collection devices. Instead of coupling light via evanescent waves, here the light is injected into the cavity by connecting a waveguide and a deformed microdisk directly. The light on resonance can be reflected back and detected at the same waveguide, making the devices to be “easy come easy go.” The reflectance is as high as 95% and can be periodically obtained from the long-lived resonances with free spectral range around 18 nm. The proposed mechanism is found to be robust to cavity shape, refractive index, and waveguide width and all the parameters can be larger than 500 nm, making the designed devices to be easier realized by standard photolithography. We believe this research will boost the development of low-cost silicon photonic devices.
  • Keywords
    light reflection; micro-optics; microcavities; optical waveguides; photolithography; reflectivity; refractive index; cavity shape; collection resonant device; deformed microdisk-based end-fire injection; photolithography; reflectance; refractive index; silicon photonic devices; waveguide width; Cavity resonators; Couplings; Diamonds; Microcavities; Optical waveguides; Reflection; Cavity resonators; Optical microcavity; cavity resonators; optical coupler; optical microcavity; resonator filter; resonator filters;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2015.2453638
  • Filename
    7164274