首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Comparative analysis of the effects of internal lasing oscillation and external light injection on semiconductor optical amplifier performance
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Comparative analysis of the effects of internal lasing oscillation and external light injection on semiconductor optical amplifier performance

机译:内部激光振荡和外部光注入对半导体光放大器性能影响的比较分析

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摘要

One of the key differences of a semiconductor optical amplifier (SOA) with internal lasing oscillation (ILO) from a SOA with external light injection (ELI) lies in a carrier-sharing mechanism. Since the internal lasing mode shares the same pool of carriers with the signals, the carriers (or photons) withdrawn from the circulating laser mode speed up the gain recovery. On the other hand, the external light injected into the SOA shortens the carrier recovery time through optical pumping without any carrier sharing involved. To find out a better scheme, we have made a comparative investigation on the effects of the ILO and ELI on the SOA performance. It turns out by way of simulation that the ELI scheme provides faster gain recovery, shorter carrier lifetime, and higher saturation power when the external injection power is higher than the internal lasing power. The performance enhancement is not so pronounced with the carrier-sharing mechanism, as the internal lasing mode itself gives rise to severe longitudinal spatial hole burning (LSHB). Nevertheless, the ILO scheme is preferable for linear-amplification applications. We also examine the use of the ELI for low-crosstalk optical amplifiers. It is found that the ELI scheme does not bring in a very strong resonance peak in the crosstalk, which appears in a SOA with ILO due to relaxation oscillations of the lasing mode. In comparison to the ILO in SOAs, the ELI into SOAs is likely to leave more optical gain for multi-channel amplification without any sacrifice on the crosstalk.
机译:具有内部激光振荡(ILO)的半导体光放大器(SOA)与具有外部光注入(ELI)的SOA的主要区别之一在于载流子共享机制。由于内部激射模式与信号共享相同的载流子池,因此从循环激光模式中退出的载流子(或光子)可加快增益恢复。另一方面,在不涉及任何载流子共享的情况下,注入到SOA中的外部光通过光泵浦缩短了载流子恢复时间。为了找到更好的方案,我们对ILO和ELI对SOA性能的影响进行了比较研究。通过仿真证明,当外部注入功率高于内部激光发射功率时,ELI方案可提供更快的增益恢复,更短的载波寿命和更高的饱和功率。载流子共享机制的性能增强并不那么明显,因为内部激光模式本身会引起严重的纵向空间空穴燃烧(LSHB)。但是,对于线性放大应用,ILO方案是更可取的。我们还研究了ELI在低串扰光放大器中的使用。已经发现,ELI方案不会在串扰中产生非常强的共振峰,这在具有ILO的SOA中由于激射模式的弛豫振荡而出现。与SOA中的ILO相比,进入SOA的ELI可能会为多通道放大留下更多的光增益,而不会影响串扰。

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