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Microwave signals generated by optical heterodyne between injection-locked semiconductor lasers

机译:光学外差在注入锁定半导体激光器之间产生的微波信号

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摘要

Single-mode-laser rate equations with added Langevin noise sources are used to study injection-locked semiconductor lasers. Two slave lasers are frequency-locked on the same or different sidebands of a current-modulated master laser. The optical heterodyne between the two secondary lasers is characterized. It is demonstrated that the frequency stability of the source modulating the master laser is preserved on the sidebands and partially transferred to the slaves. A linear model is first investigated. Static operation conditions and small-signal behavior are then calculated. Direct simulation of the rate equations for each laser is next achieved. This highlights the validity domain and limitations of the linear model. A more complete set of results-such as laser and heterodyne spectra-is also obtained. It is moreover shown that synchronization of the slave laser diodes by optical injection-locking leads to strongly correlated, while not identical, laser fields. Finally, simulation results are compared to experimental data.
机译:带有添加的兰格文噪声源的单模激光速率方程式用于研究注入锁定半导体激光器。两个从激光器锁定在电流调制主激光器的相同或不同边带上。表征了两个次级激光器之间的光学外差。结果表明,调制主激光器的光源的频率稳定性保留在边带上,并部分转移给从属设备。首先研究线性模型。然后计算静态工作条件和小信号行为。接下来就可以对每个激光器的速率方程进行直接仿真。这突出了线性模型的有效性域和局限性。还可以获得更完整的结果集,例如激光光谱和外差光谱。此外,示出了通过光学注入锁定对从激光二极管的同步导致了高度相关的激光场,但是不完全相同。最后,将仿真结果与实验数据进行比较。

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