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      Electrically pumped hybrid AlGaInAs-silicon evanescent laser

      , , , , ,
      Optics Express
      The Optical Society

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          Abstract

          An electrically pumped light source on silicon is a key element needed for photonic integrated circuits on silicon. Here we report an electrically pumped AlGaInAs-silicon evanescent laser architecture where the laser cavity is defined solely by the silicon waveguide and needs no critical alignment to the III-V active material during fabrication via wafer bonding. This laser runs continuous-wave (c.w.) with a threshold of 65 mA, a maximum output power of 1.8 mW with a differential quantum efficiency of 12.7 % and a maximum operating temperature of 40 degrees C. This approach allows for 100's of lasers to be fabricated in one bonding step, making it suitable for high volume, low-cost, integration. By varying the silicon waveguide dimensions and the composition of the III-V layer, this architecture can be extended to fabricate other active devices on silicon such as optical amplifiers, modulators and photo-detectors.

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          Author and article information

          Journal
          OPEXFF
          Optics Express
          Opt. Express
          The Optical Society
          1094-4087
          2006
          2006
          2006
          2006
          : 14
          : 20
          : 9203
          Article
          10.1364/OE.14.009203
          19529301
          8284970e-fde9-4386-8d8a-23c0cf035db6
          © 2006
          History

          Molecular medicine,Neurosciences
          Molecular medicine, Neurosciences

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