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Systematic Investigation of the Alpha Parameter Influence on the Critical Feedback Level in QD Lasers

机译:系统调查QD激光器临界反馈级别的α参数影响

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The dramatic variation in the linewidth enhancement factor (α_H–factor) that has been reported for quantum dot lasers makes them an interesting subject for optical feedback studies. A low α_H–factor combined with a high damping factor is especially interesting because it should increase the tolerance to optical feedback in these devices and may offer potential advantages for direct modulation. In the particular case of QD lasers, the carrier density is not clearly clamped at threshold. The lasing wavelength can switch from the ground state (GS) to the excited state (ES) as the current injection increases meaning that a carrier accumulation occurs in the ES even though lasing in the GS is still occurring. The filling of the ES inevitably enhances the α_H–factor of the GS above threshold as experimentally and numerically shown. Consequently, this strong variation of the GS α_H–factor in comparison to QW devices, should theoretically produce a significant variation in the onset of coherence collapse due to feedback. This coherence collapse regime, in which the laser is subject to instabilities, is incompatible with data transmission because of the induced high bit-error rate. One method to investigate the tolerance to optical feedback is to compare experiment with the theoretical work introduced by Petermann. It will be presented that under specific conditions, i.e., in the case of a strong enhancement in the α_H-factor, the feedback sensitivity of the laser can vary by as much as 10dB within the same device.
机译:为量子点激光器报道的线宽增强因子(α_H因子)的巨大变化使它们成为光学反馈研究的有趣主题。低α_H因子与高阻尼因子组合特别有趣,因为它应该增加这些装置中的光学反馈的公差,并且可以提供直接调制的潜在优点。在QD激光器的特定情况下,载流子密度不明确地夹紧阈值。当电流注入增加时,激光波长可以从地面状态(GS)切换到激发状态(ES),因为即使在GS中激光在ES中发生载波累积,即使在GS中的激光仍然发生在ES中也是如此。 ES的填充不可避免地在实验和数值上显示以上阈值的α_h因子。因此,与QW器件相比,GSα_h因子的这种强大变化应该在理论上,应该产生由于反馈而产生的相干崩溃的发作的显着变化。这种相干崩溃制度,其中激光受到不稳定性的制度与数据传输不兼容,因为诱导的高位误差率。一种研究光学反馈的公差的一种方法是将试验与Petermann引入的理论工作进行比较。将介绍在特定条件下,即,在α_h因子中强大的情况下,激光器的反馈灵敏度可以在同一装置内变化多达10dB。

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