High-performance phase locking of wide linewidth semiconductor lasers by combined use of optical injection locking and optical phase-lock loop
- 1 January 1999
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in Journal of Lightwave Technology
- Vol. 17 (2) , 328-342
- https://doi.org/10.1109/50.744252
Abstract
The requirement for narrow linewidth lasers or short-loop propagation delay makes the realization of optical phase-lock loops using semiconductor lasers difficult. Although optical injection locking can provide low phase error variance for wide linewidth lasers, the locking range is restricted by stability considerations. Theoretical and experimental results for a system which combines both techniques so as to overcome these limitations, the optical injection phase-lock loop (OIPLL), are reported. Phase error variance values as low as 0.006 rad(2) (500 MHz bandwidth) and locking ranges exceeding 26 GHz were achieved in homodyne OIPLL systems using DFB lasers of summed linewidth 36 MHz, loop propagation delay of 15 ns and injection ratio less than -30 dB, Phase error variance values as low as 0.003 rad(2) in a bandwidth of 100 MHz, a mean time to cycle slip of 3 x 10(10) s and SSB noise density of -94 dBc/Hz at 10 kHz offset mere obtained for the same lasers in an heterodyne OIPLL configuration with loop propagation delay of 20 ns and injection ratio of -30 dBKeywords
This publication has 19 references indexed in Scilit:
- Microwave frequency synthesis using injection locked laser comb line selectionPublished by Institute of Electrical and Electronics Engineers (IEEE) ,2005
- Optical injection locking and phase-lock loop combined systemsOptics Letters, 1994
- Fast heterodyne optical phase-lock loop using double quantum well laser diodesElectronics Letters, 1992
- Injection locking in distributed feedback semiconductor lasersIEEE Journal of Quantum Electronics, 1991
- Analysis of a homodyne receiver using an injection-locked semiconductor laserJournal of Lightwave Technology, 1991
- Delay, linewidth and bandwidth limitations in optical phase-locked loop designElectronics Letters, 1990
- A 1320-nm experimental optical phase-locked loop: performance investigation and PSK homodyne experiments at 140 Mb/s and 2 Gb/sJournal of Lightwave Technology, 1990
- Phase-locked-loop analysis for pilot carrier coherent optical receiversElectronics Letters, 1985
- Frequency stabilization of a diode laser by use of the optogalvanic effectApplied Physics Letters, 1982
- Coherence of injection phase-locked AlGaAs semiconductor laserElectronics Letters, 1980