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Tunable optical narrowband filter using a gain-coupled phase-shift-controlled distributed feedback laser

机译:使用增益耦合相移控制分布式反馈激光器的可调谐光学窄带滤波器

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摘要

In this paper, we have proposed and analyzed a new tunable optical narrowband filter using gain-coupled phase-shift-controlled distributed feedback (GC-PSC-DFB) laser diode. Coupled-mode equations are solved by using the transfer matrix method (TMM). The GC-PSC-DFB filters offer a stable single-mode bandpass output, similar to that obtained with phase-shifted index-coupled structures. However, GC structures do not suffer from the severe longitudinal spatial hole burning (SHB) that occurs in high-coupling quarter-wave-shifted DFB filters. This SHB can cause multimoded behavior for high-input signal power. Various filter parameters such as wavelength tuning range, side-mode suppression ratio (SMSR), and channel gain deviation have been investigated and discussed. Our results show that the GC DFB structures offer a wider tuning range of 23.3 /spl Aring/ compared with the similar index-coupled DFB structures with nearly steady bandwidth of 12 GHz, while maintaining 41.8-dB constant gain.
机译:在本文中,我们提出并分析了一种使用增益耦合相移控制分布式反馈(GC-PSC-DFB)激光二极管的新型可调光窄带滤波器。使用传递矩阵法(TMM)求解耦合模方程。 GC-PSC-DFB滤波器可提供稳定的单模带通输出,类似于通过相移索引耦合结构获得的输出。但是,GC结构不会遭受在高耦合四分之一频移DFB滤波器中发生的严重的纵向空间空穴燃烧(SHB)。该SHB可能导致高输入信号功率发生多种变化。已经研究和讨论了各种滤波器参数,例如波长调谐范围,侧模抑制比(SMSR)和通道增益偏差。我们的结果表明,与具有12 GHz几乎稳定带宽的相似的索引耦合DFB结构相比,GC DFB结构提供了更宽的23.3 / spl Aring /调谐范围,同时保持了41.8 dB的恒定增益。

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