DocumentCode :
1440511
Title :
Monolithic vertical-cavity laser/p-i-n photodiode transceiver array for optical interconnects
Author :
Kazlas, Peter ; Wasserbauer, John ; Scott, Jeffrey ; Paananen, David ; Swirhun, Stan ; Lewis, David
Author_Institution :
Dept. of Electr. & Comput. Eng., Colorado Univ., Boulder, CO, USA
Volume :
10
Issue :
11
fYear :
1998
Firstpage :
1530
Lastpage :
1532
Abstract :
The design, fabrication, and characterization of a 16-element monolithic 850-nm vertical-cavity laser/p-type-intrinsic-n-type (VCL/p-i-n) photodiode transceiver array for optical interconnects are described. The packaged VCL/p-i-n array exhibits excellent array uniformity over a large temperature range. Packaged VCLs display up to 1 mW of single-mode power and a relative intensity noise below -120 dB/Hz for all currents above threshold at a measuring bandwidth of 2 GHz. The p-i-n photodiodes exhibit a responsivity of 0.535 A/W and a -3-dB bandwidth of 2.3 GHz. A microlens array integrated into the packaged VCL/p-i-n device decreases the VCL beam divergence six to seven times. Polarization control with a mean rejection ratio of 22 dB across the VCL array is achieved with the use of oval aperture VCLs.
Keywords :
arrays; integrated circuit packaging; integrated optoelectronics; laser beams; laser cavity resonators; laser modes; laser noise; laser transitions; optical interconnections; optical receivers; optical transmitters; p-i-n photodiodes; transceivers; 16-element monolithic 850-nm vertical-cavity laser; 2 GHz; 2.3 GHz; 850 nm; VCL array; VCL beam divergence; large temperature range; mean rejection ratio; microlens array; monolithic vertical-cavity laser/p-i-n photodiode transceiver array; optical interconnects; oval aperture VCL; p-type-intrinsic-n-type VCL/p-i-n photodiode transceiver array; packaged VCL/p-i-n device; relative intensity noise; responsivity; single-mode power; Bandwidth; Laser noise; Optical arrays; Optical design; Optical device fabrication; Optical interconnections; PIN photodiodes; Packaging; Transceivers; Vertical cavity surface emitting lasers;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/68.726739
Filename :
726739
Link To Document :
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