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Transverse-mode dynamics in directly modulated vertical-cavity surface-emitting lasers with optical feedback

机译:具有光反馈的直接调制垂直腔面发射激光器中的横向模式动力学

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Vertical-cavity surface-emitting lasers (VCSELs) with optical feedback are known to exhibit different transverse-mode regimes depending on the injection current. Close to threshold a VCSEL operates on the fundamental transverse mode, while for larger injection the dynamics is often multimode, with the optical feedback inducing either in-phase or anti-phase transverse mode oscillations. In this paper, we study numerically the influence of current modulation on these different feedback-induced transverse-mode regimes. The modulation amplitude and period are taken as control parameters. We find that the in-phase and anti-phase regimes are robust under weak modulation. As the modulation amplitude increases, there is a transition to a dynamics governed by the current modulation, where the total output power follows the injection current and there is either single-mode or in-phase multimode behavior. However, the effect of the current modulation depends on the modulation period. Under fast modulation, the laser cannot follow the modulation and the optical-feedback-induced effects are dominant. On the contrary, under slow modulation there is a superposition of modulation and feedback effects, with the total output following the modulated current and an underlying transverse-mode behavior mainly determined by the optical feedback. A resonant behavior was observed for modulation periods close to the internal oscillation period. In this case, current modulation induces pulsing output intensity with single-mode or in-phase multimode behavior.
机译:已知具有光反馈的垂直腔面发射激光器(VCSEL)根据注入电流表现出不同的横向模式。 VCSEL接近阈值,以基本横向模式工作,而对于较大的注入,动力学通常是多模的,光反馈会引起同相或反相横向模式振荡。在本文中,我们通过数值研究了电流调制对这些不同的反馈引起的横向模式状态的影响。调制幅度和周期作为控制参数。我们发现,在弱调制下,同相和反相机制是鲁棒的。随着调制幅度的增加,过渡到由电流调制控制的动态特性,其中总输出功率跟随注入电流,并且存在单模或同相多模行为。但是,电流调制的效果取决于调制周期。在快速调制下,激光无法跟随调制,并且光反馈引起的影响是主要的。相反,在慢速调制下,调制和反馈效应会叠加,总输出跟随调制电流,而潜在的横向模式行为主要由光反馈决定。对于接近内部振荡周期的调制周期,观察到谐振行为。在这种情况下,电流调制会以单模或同相多模行为感应出脉冲输出强度。

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