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首页> 外文期刊>Journal of Lightwave Technology >High-performance phase locking of wide linewidth semiconductor lasers by combined use of optical injection locking and optical phase-lock loop
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High-performance phase locking of wide linewidth semiconductor lasers by combined use of optical injection locking and optical phase-lock loop

机译:结合使用光注入锁定和光学锁相环,可实现宽线宽半导体激光器的高性能锁相

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摘要

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/sup 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/sup 2/ in a bandwidth of 100 MHz, a mean time to cycle slip of 3/spl times/10/sup 10/ s and SSB noise density of -94 dBc/Hz at 10 kHz offset were obtained for the same lasers in an heterodyne OIPLL configuration with loop propagation delay of 20 ns and injection ratio of -30 dB.
机译:对于窄线宽激光器或短环路传播延迟的要求使得使用半导体激光器实现光学锁相环变得困难。尽管光学注入锁定可以为宽线宽激光器提供低相位误差变化,但锁定范围受稳定性考虑的限制。报道了结合两种技术以克服这些限制的系统的理论和实验结果,报告了光注入锁相环(OIPLL)。在零差OIPLL系统中,使用总线宽为36 MHz的DFB激光器,15 ns的环路传播延迟和小于15的注入比,实现了低至0.006 rad / sup 2 /(500 MHz带宽)的相位误差方差值和超过26 GHz的锁定范围。 -30分贝。在100 MHz带宽中,相位误差方差值低至0.003 rad / sup 2 /,在10时的平均周跳时间为3 / spl次/ 10 / sup 10 / s,SSB噪声密度为-94 dBc / Hz对于外差OIPLL配置中的相同激光器,获得了kHz偏移,环路传播延迟为20 ns,注入比为-30 dB。

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