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Influence of standing waves on DFB lasers including saturable absorptive gratings

机译:驻波对包括饱和吸收光栅的DFB激光器的影响

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The influence of standing waves on the performance of distributed feedback (DFB) lasers is investigated, whereby local changes of the wavenumber as induced by gain compression or inhomogeneous saturation of an absorptive grating are incorporated into the coupled wave equations. With the help of this model, it is shown that gain compression ultimatively limits the maximum output power for monomode operation. As compared to in-phase complex-coupled lasers, it is shown that the worse monomode capability of antiphase complex-coupled lasers is related to the better stability properties of these lasers. Additionally, a characteristic interaction between the saturable absorptive grating and the optical field is found, which furthermore reduces the maximum monomode output power of antiphase complex-coupled lasers with saturable absorptive gratings.
机译:研究了驻波对分布式反馈(DFB)激光器性能的影响,从而将由增益压缩或吸收光栅的不均匀饱和引起的波数局部变化合并到耦合波方程中。在该模型的帮助下,表明增益压缩最终限制了单模运行的最大输出功率。与同相复耦合激光器相比,已经表明,反相复耦合激光器的较差的单模能力与这些激光器的更好的稳定性有关。另外,发现了可饱和吸收光栅和光场之间的特征相互作用,这进一步降低了具有可饱和吸收光栅的反相复合耦合激光器的最大单模输出功率。

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