Item request has been placed! ×
Item request cannot be made. ×
loading  Processing Request

High-Q CMOS-integrated photonic crystal microcavity devices

Item request has been placed! ×
Item request cannot be made. ×
loading   Processing Request
  • معلومة اضافية
    • Publisher Information:
      Nature Publishing Group 2014-05-30T17:14:21Z 2014-05-30T17:14:21Z 2014-02 2013-08
    • نبذة مختصرة :
      Integrated optical resonators are necessary or beneficial in realizations of various functions in scaled photonic platforms, including filtering, modulation, and detection in classical communication systems, optical sensing, as well as addressing and control of solid state emitters for quantum technologies. Although photonic crystal (PhC) microresonators can be advantageous to the more commonly used microring devices due to the former's low mode volumes, fabrication of PhC cavities has typically relied on electron-beam lithography, which precludes integration with large-scale and reproducible CMOS fabrication. Here, we demonstrate wavelength-scale polycrystalline silicon (pSi) PhC microresonators with Qs up to 60,000 fabricated within a bulk CMOS process. Quasi-1D resonators in lateral p-i-n structures allow for resonant defect-state photodetection in all-silicon devices, exhibiting voltage-dependent quantum efficiencies in the range of a few 10 s of %, few-GHz bandwidths, and low dark currents, in devices with loaded Qs in the range of 4,300–9,300; one device, for example, exhibited a loaded Q of 4,300, 25% quantum efficiency (corresponding to a responsivity of 0.31 A/W), 3 GHz bandwidth, and 30 nA dark current at a reverse bias of 30 V. This work demonstrates the possibility for practical integration of PhC microresonators with active electro-optic capability into large-scale silicon photonic systems.
      United States. Defense Advanced Research Projects Agency. Photonically Optimized Embedded Microprocessors
      United States. Dept. of Energy (Science Graduate Fellowship)
    • الموضوع:
    • Note:
      application/pdf
      en_US
    • Other Numbers:
      MYG oai:dspace.mit.edu:1721.1/87589
      2045-2322
      Mehta, Karan K., Jason S. Orcutt, Ofer Tehar-Zahav, Zvi Sternberg, Reha Bafrali, Roy Meade, and Rajeev J. Ram. “High-Q CMOS-Integrated Photonic Crystal Microcavity Devices.” Sci. Rep. 4 (February 12, 2014).
      1286400542
    • Contributing Source:
      MASSACHUSETTS INST OF TECHNOL LIBRS
      From OAIster®, provided by the OCLC Cooperative.
    • الرقم المعرف:
      edsoai.on1286400542
HoldingsOnline