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Effects of current modulation on the transverse-mode dynamics of vertical-cavity surface-emitting lasers with weak optical feedback

机译:电流调制对光反馈较弱的垂直腔面发射激光器横模动力学的影响

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A numerical study of the current modulation influence on the different feedback-induced transverse-mode regimes is presented. Simulations are based on a model that includes spatial profiles for the transverse optical modes and for the carrier density in the quantum-well active region of the VCSEL, and applies to weakly index-guided VCSELs, where the transverse modal profiles and modal frequencies are determined by the built-in refraction index distribution. Optical feedback is included as in the Lang-Kobayashi approach, taking into account a single reflection in the external cavity. Transport effects are also included by considering two carrier densities, one for the carriers in the quantum-well region, and one for the carriers in the barrier region. Results show that weak modulation preserves the in-phase and anti-phase regimes arising without modulation. As the modulation amplitude increases there is a transition to a dynamics governed by the current modulation, where the total output follows the injection current and there is either single-mode or in-phase multi-mode behavior. However, the effect of the modulation depends strongly on the modulation frequency. In the case of high frequency modulation the laser cannot follow the modulation and even under strong modulation the feedback-induced effects are dominant. On the other hand, if the modulation frequency is close to the internal relaxation oscillation frequency, the modulation strongly affects the transverse-mode behavior: even weak modulation induces a resonant pulsing with single-mode or in-phase multi-mode behavior.
机译:数值研究了电流调制对不同反馈引起的横向模式状态的影响。仿真基于一个模型,该模型包括VCSEL的横向光模和量子阱有源区中载流子密度的空间分布,并适用于弱折射率引导的VCSEL,其中确定了横向模态分布和模态频率通过内置的折射率分布。考虑到外腔中的单反射,像Lang-Kobayashi方法一样,包含了光反馈。通过考虑两种载流子密度,也包括传输效应,一种是量子阱区域中的载流子,另一种是势垒区域中的载流子。结果表明,弱调制会保留未调制时出现的同相和反相状态。随着调制幅度的增加,过渡到由电流调制控制的动态特性,其中总输出跟随注入电流,并且具有单模或同相多模特性。但是,调制的效果在很大程度上取决于调制频率。在高频调制的情况下,激光无法跟随调制,即使在强调制下,反馈感应的影响也占主导地位。另一方面,如果调制频率接近内部弛豫振荡频率,则调制会强烈影响横向模式行为:即使弱调制也会引起具有单模或同相多模行为的谐振脉冲。

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