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Temperature-independent optical filter at 1.55 µm wavelength using a silica-based athermal waveguide

Temperature-independent optical filter at 1.55 µm wavelength using a silica-based athermal waveguide

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The authors have realised a temperature-independent optical filter at a 1.55 µm wavelength, using a silica-based athermal waveguide in which optical path length is independent of temperature. The temperature coefficient of the central wavelength was successfully decreased to < 4 × 10-4 nm/K, which corresponds to 3% of that of conventional silica-based waveguide filters.

References

    1. 1)
      • Y. Kokubun , S. Yoneda , H. Tanaka . Temperature independent narrow-band optical filter by an athermal waveguide. IEICE Trans. Electron. , 5 , 632 - 639
    2. 2)
      • Y. Kokubun , N. Funato , M. Takizawa . Athermal waveguide for temperature independent lightwave devices. IEEE Photonics Technol. Lett. , 11 , 1297 - 1300
    3. 3)
      • Y. Inoue , A. Kaneko , F. Hanawa , H. Takahashi , K. Hattori , S. Sumida . Athermal silica-based arrayed-waveguide grating multiplexer. Electron. Lett. , 23 , 1945 - 1947
    4. 4)
      • Y. Kokubun , M. Takizawa , S. Taga . Three-dimensional athermal waveguide for temperature independent lightwavedevices. Electron. Lett. , 15 , 1223 - 1224
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