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Small-Signal Analysis of Ultra-High-Speed 30 GHz VCSELs Using an Advanced Multi-Mode Approach

机译:使用先进的多模式方法对超高速30 GHz VCSEL进行小信号分析

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Vertical-cavity surface-emitting lasers (VCSELs) have emerged as a pioneering solution for many high-speed data communication challenges. Therefore, higher bandwidth optical interconnects with data rates in the range of 100 Gbit/s require directly modulated VCSELs with ultimate speed ratings. The small-signal modulation response of a VCSEL can be isolated from the entire system, thus providing accurate information on the intrinsic laser dynamics. Until now, it is assumed that the dynamic behavior of oxide-confined multi-mode VCSELs can be fully modeled using the single-mode rate equations developed for edge-emitters, even though the deviation between the single-mode based model and the measured data is substantially large. Using an advanced theoretical approach, rate equations for multi-mode VCSELs were developed and the small-signal modulation response of ultra-high speed devices with split carrier reservoirs corresponding with the resonating modes were analyzed. Based on this theoretical work, and including gain compression in the model, the analyzed VCSELs showed modulation bandwidth around and exceeding 30 GHz. The common set of figures of merit is extended consistently to explain dynamic properties caused by the coupling of the different reservoirs. Furthermore, beside damping and relaxation oscillation frequency, the advanced model, with gain compression included, can reveal information on the photon lifetime and highlights high-speed effects such as reduced damping in VCSELs due to a negative gain compression factor.
机译:垂直腔面发射激光器(VCSEL)已经成为应对许多高速数据通信挑战的先驱解决方案。因此,数据速率在100 Gbit / s范围内的更高带宽的光学互连需要具有最终速度额定值的直接调制VCSEL。 VCSEL的小信号调制响应可以与整个系统隔离,从而提供有关固有激光动力学的准确信息。到现在为止,尽管基于单模的模型与测量数据之间存在偏差,但仍可以使用为边发射极开发的单模速率方程来完全模拟氧化物限制的多模VCSEL的动态行为。很大。利用一种先进的理论方法,建立了多模式VCSEL的速率方程,并分析了带有分裂载流子的超高速器件与谐振模式相对应的小信号调制响应。根据这项理论工作,并在模型中包括增益压缩,所分析的VCSEL显示出30 GHz以上及以上的调制带宽。通用的一组品质因数不断扩展,以解释由不同储层耦合引起的动力特性。此外,除了阻尼和弛豫振荡频率外,带有增益压缩的高级模型还可以揭示光子寿命信息,并突出显示了高速效应,例如由于负增益压缩因子而导致VCSEL的阻尼减小。

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