DocumentCode :
83234
Title :
Monolithically Integrated Optical Phase Lock Loop for Microwave Photonics
Author :
Balakier, Katarzyna ; Fice, Martyn J. ; Ponnampalam, Lalitha ; Seeds, Alwyn J. ; Renaud, Cyril C.
Author_Institution :
Dept. of Electron. & Electr. Eng., Univ. Coll. London, London, UK
Volume :
32
Issue :
20
fYear :
2014
fDate :
Oct.15, 15 2014
Firstpage :
3893
Lastpage :
3900
Abstract :
We present a review of the critical design aspects of monolithically integrated optical phase lock loops (OPLLs). OPLL design procedures and OPLL parameters are discussed. A technique to evaluate the gain of the closed loop operating system is introduced and experimentally validated for the first time. A dual-OPLL system, when synchronised to an optical frequency comb generator without any prior filtering of the comb lines, allows generation of high spectral purity signals at any desired frequency from several GHz up to THz range. Heterodyne phase locking was achieved at a continuously tuneable offset frequency between 2 and 6 GHz. Thanks to the photonic integration, small dimensions, and custom-made electronics, the propagation delay in the loop was less than 1.8 ns, allowing good phase noise performance with OPLLs based on lasers with linewidths less than a few MHz. The system demonstrates the potential for photonic integration to be applied in various microwave photonics applications where narrow-bandwidth tuneable optical filters with amplification functionality are required.
Keywords :
closed loop systems; heterodyne detection; integrated optoelectronics; laser mode locking; laser noise; microwave generation; microwave photonics; optical delay lines; optical design techniques; optical phase locked loops; phase noise; reviews; semiconductor lasers; closed loop operating system; frequency 2 GHz to 6 GHz; heterodyne phase locking; high spectral purity signal generation; microwave photonics; monolithically integrated OPLL design; narrow-bandwidth tuneable optical filters; optical frequency comb generator; optical phase lock loop; optical propagation delay; phase noise performance; photonic integrated circuits; Laser feedback; Laser tuning; Measurement by laser beam; Optical filters; Optical mixing; Photonics; Microwave generation; microwave photonics; optical mixing; optical phase locked loops (OPLLs); phase noise; photonic integrated circuits; semiconductor lasers;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2014.2317941
Filename :
6800012
Link To Document :
بازگشت