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Chirp Manipulation of Harmonically Mode-Locked Weak-Resonant-Cavity Colorless Laser Diode With External Fiber Ring

机译:带外部光纤环的谐波锁模弱谐振腔无色激光二极管的rp控制

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The chirp manipulation of a colorless weak- resonant-cavity Fabry-Perot laser diode (WRC-FPLD) harmonically mode locking (HML) by 10-GHz direct modulation is demonstrated under the self-feedback control with an external single- or dual-fiber ring. With enlarging the self-feedback ratio through the fiber ring to 90%, the HML pulsewidth significantly shrinks to 14 ps for the colorless WRC-FPLD with a front-facet reflectance of 0.1%. Increasing the front-facet reflectance to 1% further shortens the pulsewidth to 10 ps. The interior modal linewidth of the colorless WRC-FPLD conversely broadens to 0.18 nm with enlarging the feedback ratio to 90%. The dynamic chirp of the WRC-FPLD fiber ring delivered HML pulse can be manipulated with controlling either the feedback ratio or the front-facet reflectance. The negative part of the chirp of the colorless WRC-FPLD with a front-facet reflectance of 0.1% can be eliminated to give the smallest absolute frequency chirp of 3 GHz within 28 ps by setting the self-feedback fiber ring at a self-feedback ratio of 10%. A theoretical model for the directly modulated and self-feedback colorless WRC-FPLD operated under HML scheme is established by modifying the injection-locking rate equations. The superiorities of the colorless WRC-FPLD, including longitudinal mode linewidth shrinkage and frequency chirping tenability, are successfully confirmed by experiments and simulations. The frequency chirp reduction, the modal linewidth narrowing, and the pulse shortening of the HML WRC-FPLD at relatively low front-facet reflectance can concurrently be achieved by incorporating the self-feedback single-fiber ring architecture. In comparison, such a chirp-magnitude manipulative WRC-FPLD can easily find more practical applications than a typical FPLD in fields of high-speed communications and ultrafast measurements.
机译:在具有外部单芯或双芯光纤的自反馈控制下,演示了通过10 GHz直接调制对无色弱谐振腔法布里-珀罗激光二极管(WRC-FPLD)谐波锁模(HML)的chi控制环。通过将通过光纤环的自反馈率提高到90%,对于无色WRC-FPLD,其正面反射率为0.1%,HML脉冲宽度显着减小至14 ps。将正面反射率提高到1%会进一步将脉冲宽度缩短到10 ps。相反,无色WRC-FPLD的内部模态线宽将反馈比提高到90%,从而扩大到0.18 nm。可以通过控制反馈比或正面反射率来控制WRC-FPLD光纤环传送的HML脉冲的动态chi。通过将自反馈光纤环设置为自反馈,可以消除无色WRC-FPLD rp反射的负部分,其正面反射率为0.1%,从而在28 ps内提供3 GHz的最小绝对频率chi。比例为10%。通过修改注入锁定率方程,建立了在HML模式下直接调制和自反馈无色WRC-FPLD的理论模型。通过实验和仿真成功证实了无色WRC-FPLD的优势,包括纵向模式线宽收缩和线性调频稳定性。通过合并自反馈单纤环形架构,可以同时实现频率ance降低,模态线宽变窄以及HML WRC-FPLD在相对较低的正面反射率下的脉冲缩短。相比之下,在高速通信和超快速测量领域,这种a幅度的WRC-FPLD可以比典型的FPLD轻松找到更多实际应用。

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