Low Loss Fiber-to-Waveguide Converter With a 3-D Functional Taper for Silicon Photonics
We demonstrate a low-loss and broad-bandwidth fiber-to-waveguide converter with a 3-D functional SiO 2 taper for silicon photonics. The converter is composed of a cantilevered SiO 2 waveguide and Si nano-tapers. In order to reduce the loss from the cleaved fiber, a 3-D functional SiO 2 taper is desi...
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Veröffentlicht in: | IEEE photonics technology letters 2016-11, Vol.28 (22), p.2533-2536 |
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Sprache: | eng |
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Zusammenfassung: | We demonstrate a low-loss and broad-bandwidth fiber-to-waveguide converter with a 3-D functional SiO 2 taper for silicon photonics. The converter is composed of a cantilevered SiO 2 waveguide and Si nano-tapers. In order to reduce the loss from the cleaved fiber, a 3-D functional SiO 2 taper is designed to compress the size of optical mode field. Using cleaved optical fibers with a mode field diameter of 10.5 μm at 1550 nm, we characterized the optical performances of the converter. With an index-matching liquid, the lowest coupling loss of TE mode is 1.5 dB/facet and the lowest coupling loss of TM mode is 2.1 dB/facet. For both TE and TM modes, the 1-dB bandwidth is more than 100 nm, and the alignment tolerances for 1-dB excess loss are, respectively, ±2.5 and ±2 μm in horizontal and vertical directions. |
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ISSN: | 1041-1135 1941-0174 |
DOI: | 10.1109/LPT.2016.2602366 |