||In this thesis, we propose a polymer-based demultiplexer designed for a Coarse Wavelength Division Multiplexer 4 wavelength arrayed waveguide grating. This optical system integrates a polymer polymer array waveguide grating and a photodiode array detector on a glass substrate, and connects single-mode fiber and polymer optical waveguides with active alignment.|
This polymer array waveguide grating design includes a straight polymer waveguide, a curved polymer waveguide, and a polymer free propagation region. The polymer arrayed waveguide grating demultiplexer designed by this laboratory is optically simulated and the insertion loss of 4 channels are less than 4 dB, and the crosstalk of adjacent channels is less than 25dB.
In the curved polymer waveguide, the manufacturing process and measurement are completed, and its minimum insertion loss is 45.11 dB. The result is brought back to the simulation analysis. The average error of optical simulation and measurement is 49.01%.
|| Cisco Global Cloud Index: Forecast and Methodology, 2015–2020 White Paper.|
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