Large-area binary blazed grating coupler between nanophotonic waveguide and LED

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Abstract

A large-area binary blazed grating coupler for the arrayed waveguide grating (AWG) demodulation integrated microsystem on silicon-on-insulator (SOI) was designed for the first time. Through the coupler, light can be coupled into the SOI waveguide from the InP-based C-band LED for the AWG demodulation integrated microsystem to function. Both the length and width of the grating coupler are 360 m, as large as the InP-based C-band LED light emitting area in the system. The coupler was designed and optimized based on the finite difference time domain method. When the incident angle of the light source is 0 °, the coupling efficiency of the binary blazed grating is 40.92%, and the 3 dB bandwidth is 72 nm at a wavelength of 1550 nm.

Figures

  • Figure 1: The proposed AWG demodulation integration microsystem.
  • Figure 2: The proposed binary blazed grating structure.
  • Figure 3: Wave-vector diagram for the grating coupler.
  • Figure 4: Blazed grating coupler discretization process. (a) Common blazed grating. (b) Discrete multilevel grating. (c) Binary grating.
  • Figure 5: Coupling efficiency with 𝑑BCB.
  • Figure 8: Optical field of the large-area binary blazed grating coupler bonded with the LED. (a) The optical field of the overall structure. (b) The optical field of the structure’s output terminal.
  • Figure 6: Schematic of the proposed binary blazed grating coupler: (a) top view and (b) side view.
  • Figure 7: Wavelength and coupling efficiency at the incident angle of 0∘.

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CITATION STYLE

APA

Li, H., Zhou, W., Zhang, M., Liu, Y., Zhang, C., Li, E., … Tang, C. (2014). Large-area binary blazed grating coupler between nanophotonic waveguide and LED. Scientific World Journal, 2014. https://doi.org/10.1155/2014/586517

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