DocumentCode :
1206494
Title :
Design limitations of highly parallel free-space optical interconnects based on arrays of vertical cavity surface-emitting laser diodes, microlenses, and photodetectors
Author :
Tang, Suning ; Chen, Ray T. ; Garrett, Lara ; Gerold, Dave ; Li, Maggie M.
Author_Institution :
Dept. of Electr. & Comput. Eng., Texas Univ., Austin, TX, USA
Volume :
12
Issue :
11
fYear :
1994
fDate :
11/1/1994 12:00:00 AM
Firstpage :
1971
Lastpage :
1975
Abstract :
We utilize a novel diffraction formalism to study the crosstalk effect in a highly parallel free-space optical interconnect based on two-dimensional arrays of surface-emitting laser diodes, microlenses, and photodetectors. The diffraction induced crosstalk between adjacent laser diodes in each detector to the system limitations is investigated. Optimum design rules and formulas are given for the first time, to include the relation of channel packaging density and interconnect length to the design parameters of the optical interconnect components. The design formulas developed here yield an optimum detector size and indicate a tradeoff between channel packaging density and interconnect length. The feasibility of such a free-space interconnect with a channel packaging density of 3460 channels/cm2 and 2.0 cm interconnection length is determined using typical parameters of detector radius from ~5 to ~45 μm, lens radius of 85 μm, and laser diode radius of ~5 pm operating at wavelength 0.67 pm for signal-to-noise ratio above 17 dB. Some experiments were conducted to measure the diffraction induced crosstalk and optical link efficiency
Keywords :
integrated circuit packaging; integrated optoelectronics; laser cavity resonators; lenses; light diffraction; optical communication equipment; optical crosstalk; optical design techniques; optical interconnections; photodetectors; semiconductor laser arrays; surface emitting lasers; 0.67 mum; 2 cm; 2d surface-emitting laser diode arrays; 5 to 45 mum; 85 mum; adjacent laser diodes; channel packaging density; crosstalk effect; design limitations; design parameters; diffraction formalism; diffraction induced crosstalk; free-space interconnect; highly parallel free-space optical interconnect; highly parallel free-space optical interconnects; interconnect length; laser diode radius; lens radius; microlenses; optical link efficiency; optimum design rules; optimum detector size; photodetectors; signal-to-noise ratio; system limitations; vertical cavity surface-emitting laser diodes; Diode lasers; Lenses; Optical arrays; Optical crosstalk; Optical design; Optical diffraction; Optical interconnections; Optical surface waves; Packaging; Semiconductor laser arrays;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/50.336062
Filename :
336062
Link To Document :
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