DocumentCode :
1757841
Title :
A Hybrid Integrated Light Source on a Silicon Platform Using a Trident Spot-Size Converter
Author :
Hatori, Nobuaki ; Shimizu, Tsuyoshi ; Okano, Makoto ; Ishizaka, Masashige ; Yamamoto, Takayuki ; Urino, Yutaka ; Mori, Marco ; Nakamura, T. ; Arakawa, Yasuhiko
Author_Institution :
Photonics Electron. Technol. Res. Assoc. (PETRA), Tsukuba, Japan
Volume :
32
Issue :
7
fYear :
2014
fDate :
41730
Firstpage :
1329
Lastpage :
1336
Abstract :
This paper reports a hybrid integrated light source fabricated on a Si platform using a spot-size converter (SSC) with a trident Si waveguide. Low-loss coupling for 1.55 μm and 1.3 μm wavelengths was achieved with merely the simple planar form of a Si waveguide with no use of complicated structures such as vertical tapers or an extra dielectric core overlaid on the waveguide. The coupling loss tolerance up to a 1 dB loss increase was larger than the accuracy of our passive alignment technology. The coupling efficiency was quite robust against manufacturing variations in the waveguide width compared with that of a conventional SSC with an inverse taper waveguide. A multi-channel light source with highly uniform output power and a high-temperature light source were fabricated with a 1.55 μm quantum well laser and a 1.3 μm quantum dot laser, respectively. The integration scheme we report can be used to fabricate light sources for high-density, multi-channel Si optical interposers.
Keywords :
elemental semiconductors; integrated optoelectronics; optical fabrication; optical losses; optical planar waveguides; quantum dot lasers; quantum well lasers; silicon; Si; coupling efficiency; coupling loss tolerance; high-density multichannel optical interposers; high-temperature light source; hybrid integrated light source; integration scheme; low-loss coupling; multichannel light source; output power; quantum dot laser; quantum well laser; silicon platform; simple planar form; trident spot-size converter; trident waveguide; wavelength 1.3 mum; wavelength 1.55 mum; Couplings; Light sources; Loss measurement; Optical device fabrication; Optical losses; Optical waveguides; Silicon; Hybrid integration; inter-chip optical interconnects; light sources on silicon platform; quantum dot laser; silicon optical interposer; silicon photonics; spot-size converter;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2014.2304305
Filename :
6733299
Link To Document :
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