Photonics Research, 2014, 2 (3): 03000A19, Published Online: Nov. 5, 2014  

Multichannel and high-density hybrid integrated light source with a laser diode array on a silicon optical waveguide platform for interchip optical interconnection Download: 1083次

Author Affiliations
1 Institute for Photonics-Electronics Convergence System Technology (PECST), Japan
2 Photonics Electronics Technology Research Association (PETRA), West 7SCR, 16-1 Onogawa, Tsukuba, Ibaraki 305-8569, Japan
3 National Institute of Advanced Industrial Science and Technology (AIST), West 7SCR, 16-1 Onogawa, Tsukuba, Ibaraki 305-8569, Japan
4 Institute of Industrial Science, The University of Tokyo, 4-6-1 Komaba, Meguro, Tokyo 153-8505, Japan
Abstract
A hybrid integrated light source was developed with a configuration in which a laser diode (LD) array was mounted on a silicon optical waveguide platform for interchip optical interconnection. This integrated light source is composed of 13-channel stripes with a pitch of 20 or 30 μm. The output power of each LD in the 400 or 600-μm long LD array was over 40 mW at room temperature without cooling. An output power uniformity was 1.3 dB including an LD array power uniformity. The use of a SiON waveguide with a spot size converter resulted in an optical coupling loss of 1 dB between an LD and SiON waveguide. The integrated light source including 52 output ports demonstrated a reduction in the footprint per channel. We also demonstrated a light source with over 100 output ports in which the number of output ports is increased by using a waveguide splitter and multichip bonding. These integrated light sources are practical candidates for use with photonic integrated circuits for high-density optical interconnection.

Takanori Shimizu, Nobuaki Hatori, Makoto Okano, Masashige Ishizaka, Yutaka Urino, Tsuyoshi Yamamoto, Masahiko Mori, Takahiro Nakamura, Yashuhiko Arakawa. Multichannel and high-density hybrid integrated light source with a laser diode array on a silicon optical waveguide platform for interchip optical interconnection[J]. Photonics Research, 2014, 2(3): 03000A19.

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