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Stabilization of flat-mirror vertical-external-cavity surface-emitting lasers by spatiotemporal modulation of the pump profile

机译:通过泵轮廓的时空调制来稳定平面镜垂直外腔表面发射激光器

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摘要

We propose and demonstrate theoretically that vertical-external-cavity surface-emitting lasers (VECSELs) with external flat mirrors can be stabilized by applying a periodic spatiotemporal modulation of the pump current. Such pump modulation is shown to suppress the pattern-forming instabilities (modulation instabilities), which eventually results in stable beam emission. A modified Floquet linear stability analysis is used to characterize the dynamics of the modulated system and to evaluate its stabilization performance. Stability maps identify the regions in parameter space for complete and partial stabilization of VECSELs operating in different regimes depending on the external-cavity length. In particular, the stabilization method is shown to operate most efficiently in Class-A laser limit (for relatively long VECSEL resonators), while it becomes ineffective in Class-B laser limit (for relatively short resonators). The stabilization effect is further confirmed through direct integration of the dynamical equations.
机译:我们提出并从理论上证明,通过应用泵浦电流的周期性时空调制,可以稳定带有外部平面镜的垂直外腔表面发射激光器(VECSEL)。示出了这种泵浦调制抑制了图案形成不稳定性(调制不稳定性),其最终导致稳定的光束发射。改进的Floquet线性稳定性分析用于表征调制系统的动力学特性并评估其稳定性能。稳定性图确定了参数空间中的区域,以便根据外腔长度在不同状态下运行的VECSEL完全或部分稳定。特别是,稳定化方法在A类激光极限(对于相对较长的VECSEL谐振器)中显示出最有效的操作,而在B类激光极限(对于相对较短的谐振器)中则无效。通过动力学方程的直接积分进一步证实了稳定作用。

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