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Phase-Plane Analysis of Rational Harmonic Mode-Locking in an Erbium-Doped Fiber Ring Laser

机译:掺Fiber光纤环形激光器中合理谐波锁模的相平面分析

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摘要

We investigate the system performance of rational harmonic mode-locking in an erbium-doped fiber ring laser using the phase-plane technique of the nonlinear control engineering. Contributions from harmonic distortion, a Gaussian-like modulating signal, and its duty cycle to the system behavior are studied. We also demonstrate 660× and 1230× repetition rate multiplications on a 100-MHz pulse train generated from an active harmonically mode-locked fiber ring laser, and we hence achieve 66- and 123-GHz pulse operations by using the above-mentioned technique. It has been found out that the maximum obtainable rational harmonic order is limited by the harmonic distortion of the system as well as the pulse width of the generated signal, which in turn is determined by the duty cycle of the modulating signal. Furthermore, the rational harmonic order increases the complexity of the pulse formation process and hence challenges its stability.
机译:我们使用非线性控制工程的相平面技术研究掺光纤环形激光器中合理谐波锁模的系统性能。研究了谐波失真,高斯型调制信号及其占空比对系统行为的影响。我们还演示了从有源谐波锁模光纤环形激光器产生的100 MHz脉冲序列上的660x和1230x重复率乘法,因此,通过使用上述技术,我们实现了66 GHz和123 GHz脉冲操作。已经发现,最大可获得的有理谐波阶数受系统的谐波畸变以及所生成信号的脉冲宽度的限制,而后者又由调制信号的占空比确定。此外,合理的谐波阶数增加了脉冲形成过程的复杂性,因此挑战了其稳定性。

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