Arrayed Waveguide Gratings and Their Application Using Super-High-.DELTA. Silica-Based Planar Lightwave Circuit Technology

Author:

MARU Koichi1,UETSUKA Hisato2

Affiliation:

1. Information System Products Division, Hitachi Cable, Ltd.

2. Electronics Research & Development Center, Hitachi Cable, Ltd.

Publisher

Institute of Electronics, Information and Communications Engineers (IEICE)

Subject

Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials

Reference29 articles.

1. [1] Y. Hibino, “Recent advances in high-density and large-scale AWG multi/demultiplexer with higher index-contrast silica-based PLCs, ” IEEE J. Sel. Top. Quantum Electron., vol.8, no.6, pp.1090-1101, Nov./Dec. 2002.

2. Fabrication of 64 × 64 arrayed-waveguide grating multiplexer on silicon

3. [3] Y. Hibino, Y. Hida, A. Kaneko, M. Ishii, M. Itoh, T. Goh, A. Sugita, T. Saida, A. Himeno, and Y. Ohmori, “Fabrication of silica-on-Si waveguide with higher index difference and its application to 256 channel arrayed-waveguide multi/demultiplexer, ” Proc. Optical Fiber Communication Conf. (OFC 2000), WH2, pp.127-129, 2000.

4. Super-high- athermal arrayed waveguide grating with resin-filled trenches in slab region

5. [5] K. Maru, H. Ishikawa, H. Komano, N. Kitano, Y. Abe, K. Matsui, S. Kashimura, S. Himi, and H. Uetsuka, “2.5%-Δ silica-based arrayed-waveguide grating multi/demultiplexer with low crosstalk, ” Proc. 9th Optoelectronics and Communications Conf./3rd International Conf. on Optical Internet (OECC/COIN 2004), 15F1-4, pp.720-721, 2004.

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