DocumentCode
46269
Title
40 Gb/s Data Transmission Over a 1-m-Long Multimode Polymer Spiral Waveguide for Board-Level Optical Interconnects
Author
Bamiedakis, Nikolaos ; Jian Chen ; Westbergh, Petter ; Gustavsson, Johan S. ; Larsson, Anders ; Penty, Richard V. ; White, Ian H.
Author_Institution
Eng. Dept., Univ. of Cambridge, Cambridge, UK
Volume
33
Issue
4
fYear
2015
fDate
Feb.15, 15 2015
Firstpage
882
Lastpage
888
Abstract
Optical interconnects have attracted considerable attention for use in short-reach communication links within high-performance electronic systems, such as data centers, supercomputers, and data storage systems. Multimode polymer waveguides, in particular, constitute an attractive technology for use in board-level interconnects as they can be cost-effectively integrated onto standard PCBs and allow system assembly with relaxed alignment tolerances. However, their highly multimoded nature raises important concerns about their bandwidth limitations and their potential to support very high on-board data rates. In this paper, we report record error-free (BER <; 10-12 ) 40 Gb/s data transmission over a 1-m-long multimode polymer spiral waveguide and present thorough studies on the waveguide bandwidth performance. The frequency response of the waveguide is investigated under a wide range of launch conditions and in the presence of input spatial offsets, which are expected to be highly-likely in real-world systems. A robust bandwidth performance is observed with a bandwidth-length product of at least 35 GHz×m for all launch conditions studied. The reported results clearly demonstrate the potential of this technology for use in board-level interconnects, and indicate that data rates of at least 40 Gb/s are feasible over waveguide lengths of 1 m.
Keywords
frequency response; optical communication; optical interconnections; optical polymers; optical waveguides; bit rate 40 Gbit/s; board-level optical interconnects; data transmission; frequency response; multimode polymer spiral waveguide; size 1 m; waveguide bandwidth performance; Bandwidth; Optical fibers; Polymers; Spirals; Vertical cavity surface emitting lasers; Board-level optical interconnects; board-level optical interconnects; multimode waveguides; polymer waveguides; waveguide bandwidth;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2014.2371491
Filename
6960858
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