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Mid-Infrared Supercontinuum Generation Up to 4.6 μm Using Step-Index Indium Fluoride Fiber Pumped by a Femtosecond Fiber Laser Near 2 μm

机译:使用由飞秒纤维激光器泵送的步进指数铟氟化纤维,中红外超级连续素产生高达4.6μm的二进制轴高达4.6μm

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We report mid-infrared supercontinuum (SC) generation in a dispersion-engineered step-index indium fluoride fiber pumped by a femtosecond fiber laser near 2 μm. The SC spans 1.8 octaves from 1.25 μm to 4.6 μm with an average output power of 270 mW. The pump source is an all-fiber femtosecond laser that generates sub-100 fs pulses at 50 MHz repetition rate with 570 mW average power. The indium fluoride fiber used for SC generation is designed to have a zerodispersion wavelength close to 1.9 μm. Two fiber lengths of 30 cm and 55 cm are selected for the SC generation experiments based on the numerical modelling results. The measured spectra and the numerical modelling results are presented showing good agreement for both lengths. The femtosecond pumping regime is a key requirement for generating a coherent SC. We show by modelling that the SC is coherent for a pump with the same pulse width and energy as our fiber laser and added quantum-limited noise. The results are promising for the realization of coherent and high-repetition-rate SC sources, two conditions that are critical for spectroscopy applications using FTIR spectrometers. Additionally, the entire SC system is built using optical fibers with similar core diameters, which enables integration into a compact platform.
机译:我们在分散的工程的阶梯指数铟氟化铟纤维中报告了中红外超大素(SC)产生,由Femtosecond光纤激光器接近2μm。 SC跨越1.8八位八个从1.25μm到4.6μm的平均输出功率为270 mW。泵浦源是全纤维飞秒激光器,以50 MHz的重复速率产生50 MHz的平均功率。用于SC的氟化铟纤维被设计为具有接近1.9μm的零滴水波长。基于数值建模结果,选择两个纤维长度为30cm和55cm的纤维长度。测量的光谱和数值建模结果显示出对两个长度的良好一致性。 Femtosecond泵送制度是产生相干SC的关键要求。我们通过建模显示SC对于具有与光纤激光相同的脉冲宽度和能量相同的泵的泵相干,并添加量子有限的噪音。结果是实现相干和高重复率的SC源,这两个条件对于使用FTIR光谱仪的光谱应用至关重要。此外,整个SC系统采用具有相似芯直径的光纤构建,这使得集成到紧凑的平台中。

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