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Optimized chaotic Brillouin dynamic grating with filtered optical feedback

机译:具有滤波光反馈的优化混沌布里渊动态光栅

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摘要

Chaotic Brillouin dynamic gratings (BDGs) have special advantages such as the creation of single, permanent and localized BDG. However, the periodic signals induced by conventional optical feedback (COF) in chaotic semiconductor lasers can lead to the generation of spurious BDGs, which will limit the application of chaotic BDGs. In this paper, filtered optical feedback (FOF) is proposed to eliminate spurious BDGs. By controlling the spectral width of the optical filter and its detuning from the laser frequency, semiconductor lasers with FOF operate in the suppression region of the time-delay signature, and chaotic outputs serving as pump waves are then utilized to generate the chaotic BDG in a polarization maintaining fiber. Through comparative analysis of the COF and FOF schemes, it has been demonstrated that spurious BDGs are effectively eliminated and that the reflection characterization of the chaotic BDG is improved. The influence of FOF on the reflection and gain spectra of the chaotic BDG is analyzed as well.
机译:混沌布里渊动态光栅(BDG)具有特殊优势,例如创建单个,永久和局部BDG。然而,在混沌半导体激光器中由常规光反馈(COF)引起的周期性信号会导致杂散BDG的生成,这将限制混沌BDG的应用。本文提出了滤波光反馈(FOF)来消除杂散BDG。通过控制滤光片的光谱宽度及其与激光频率的失谐,具有FOF的半导体激光器在时延特征的抑制区域内工作,然后利用用作泵浦波的混沌输出在半导体激光器中产生混沌BDG。保偏光纤。通过对COF和FOF方案的比较分析,已证明有效消除了杂散BDG,并改善了混沌BDG的反射特性。还分析了FOF对混沌BDG的反射和增益谱的影响。

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