DocumentCode :
79743
Title :
An Integrated 40 Gbit/s Optical Costas Receiver
Author :
Mingzhi Lu ; Hyun-Chul Park ; Bloch, Eli ; Sivananthan, A. ; Parker, John S. ; Griffith, Zach ; Johansson, Leif A. ; Rodwell, Mark J. W. ; Coldren, Larry A.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of California, Santa Barbara, Santa Barbara, CA, USA
Volume :
31
Issue :
13
fYear :
2013
fDate :
1-Jul-13
Firstpage :
2244
Lastpage :
2253
Abstract :
In this paper, a highly-integrated widely-tunable optical homodyne receiver is reported with 40 Gbaud/s data rate. By using photonic and electronic integration, the receiver is realized within a size of 10 × 10 mm2, and the system is very robust and resistive to environmental changes. An integrated photonic coherent receiver circuit is demonstrated with 35 GHz photodetector bandwidth, and the integrated local oscillator (LO) laser covers a 40 nm range. The electronic IC (EIC) has a working frequency up to 50 GHz. The feedback loop is carefully analyzed and designed, and the experimental results show > 1.1 GHz loop bandwidth, which matches the design. The hold-in range is measured to be > 15 GHz. The phase noise of the transmitting laser has been cloned to the LO laser quite well, and both the linewidth measurement and phase noise measurement show no observable cross talk between binary phase shift keying (BPSK) data and the optical phase-locked loop (OPLL). Error free ( bit error rate <; 10-12) is achieved up to 35 Gbit/s. The system consumes 3 Watts of power.
Keywords :
integrated optics; laser feedback; laser noise; optical modulation; optical phase locked loops; optical receivers; optical tuning; oscillators; phase noise; phase shift keying; photodetectors; bandwidth 35 GHz; binary phase shift keying; bit rate 40 Gbit/s; electronic IC; electronic integration; feedback loop; frequency 50 GHz; hold-in range; integrated local oscillator laser; integrated optical Costas receiver; integrated photonic coherent receiver circuit; linewidth measurement; optical homodyne receiver; optical phase locked loop; optical tuning; phase noise measurement; power 3 W; Adaptive optics; Bandwidth; High-speed optical techniques; Integrated optics; Optical receivers; Semiconductor lasers; Coherent receiver; Costas loop; homodyne detection; optical phase-locked loops; optical receivers;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2013.2265075
Filename :
6521337
Link To Document :
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