A Novel Design of Grating Couplers for Efficient Broadband Coupling between Silicon-on-Insulator Nanophotonic Waveguides and Fibres
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Abstract
A novel design of out-of-plane grating couplers is proposed for coupling between silicon-on-insulator nanophotonic waveguides and single-mode fibres. The coupler with the first-order diffraction coupling to the optical fibre is actually a second-order reflected grating with two times of period of the first-order grating. To enhance outcoupled power, a back hole is designed to form in the silicon substrate and a kind of metals is placed on the top acting as a reflection layer. The coupler is optimized using coupled-mode-based simulations, showing that the coupling efficiency to and from tapered optical fibre can be as high as 85% with 1dB bandwidth about 23nm.
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YU He-Jun, YU Jin-Zhong. A Novel Design of Grating Couplers for Efficient Broadband Coupling between Silicon-on-Insulator Nanophotonic Waveguides and Fibres[J]. Chin. Phys. Lett., 2005, 22(11): 2865-2868.
YU He-Jun, YU Jin-Zhong. A Novel Design of Grating Couplers for Efficient Broadband Coupling between Silicon-on-Insulator Nanophotonic Waveguides and Fibres[J]. Chin. Phys. Lett., 2005, 22(11): 2865-2868.
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YU He-Jun, YU Jin-Zhong. A Novel Design of Grating Couplers for Efficient Broadband Coupling between Silicon-on-Insulator Nanophotonic Waveguides and Fibres[J]. Chin. Phys. Lett., 2005, 22(11): 2865-2868.
YU He-Jun, YU Jin-Zhong. A Novel Design of Grating Couplers for Efficient Broadband Coupling between Silicon-on-Insulator Nanophotonic Waveguides and Fibres[J]. Chin. Phys. Lett., 2005, 22(11): 2865-2868.
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