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2–10 μm Mid-Infrared Fiber-Based Supercontinuum Laser Source: Experiment and Simulation

机译:2 - 基于中红外光纤的超源激光源:实验和仿真

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摘要

Mid-infrared supercontinuum (mid-IR SC) sources in the 2–20 μm molecular fingerprint region are in high demand for a wide range of applications including optical coherence tomography, remote sensing, molecular spectroscopy, and hyperspectral imaging. Herein, mid-IR SC generation is investigated in a cascaded silica-ZBLAN-chalcogenide fiber system directly pumped with a commercially available pulsed fiber laser operating in the telecommunications window at 1.55 μm. This fiber-based system is shown to generate a flat broadband mid-IR SC covering the entire range from 2 to 10 μm with several tens of mW of output power. This technique paves the way for low cost, practical, and robust broadband SC sources in the mid-IR without the requirement of mid-infrared pump sources or Thulium-doped fiber amplifiers. A fully realistic numerical model used to simulate the nonlinear pulse propagation through the cascaded fiber system is also described and the numerical results are used to discuss the physical processes underlying the spectral broadening in the cascaded system. Finally, recommendations are provided for optimizing the current cascaded system based on the simulation results.
机译:2夸脱的中红外超级素(Mid-IR SC)源在2℃分子指纹区域的需求量很大,适用于各种应用,包括光学相干断层扫描,遥感,分子光谱和高光谱成像。在此,在级联二氧化硅 - Zblan-硫属化物纤维系统中研究了中间IR SC生成,直接用市售的脉冲光纤激光器在1.55°M中的电信窗口中操作。该基于光纤的系统显示为产生平板宽带中间IR SC,覆盖2至10°M的整个范围,具有几十MW的输出功率。该技术在中外的低成本,实用和强大的宽带SC源中铺平了道路,而无需中红外泵源或掺杂的纤维放大器。还描述了用于通过级联光纤系统模拟非线性脉冲传播的完全逼真的数值模型,并且数值结果用于讨论级联系统中光谱展宽的物理过程。最后,提供了基于仿真结果优化当前级联系统的建议。

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