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High-power mid-infrared high repetition-rate supercontinuum source based on a chalcogenide step-index fiber

机译:基于硫族化物阶跃折射率光纤的高功率中红外高重复率超连续谱源

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摘要

We demonstrate a tunable and robust femtosecond supercontinuum source with a maximum output power of 550 mW and a maximum spectral width of up to 2.0 mu m, which can cover the mid-infrared region from 2.3 mu m up to 4.9 mu m by tuning the pump wavelength. As2S3 chalcogenide step-index fibers with core diameters of 7 and 9 mu m are pumped at different wavelengths from 2.5 mu m up to 4.1 mu m with femtosecond pulses by means of a post-amplified optical parametric oscillator pumped by an Yb:KGW laser. The spectral behavior of the supercontinuum is investigated by changing the pump wavelength, core diameter, fiber length, and pump power. Self-phase modulation is identified as the main broadening mechanism in the normal dispersion regime. This source promises to be an excellent laboratory tool for infrared spectroscopy owing to its high brilliance as demonstrated for the CS2-absorption bands around 3.5 mu m. (C) 2015 Optical Society of America
机译:我们演示了一种可调健壮的飞秒超连续谱源,其最大输出功率为550 mW,最大光谱宽度高达2.0μm,通过调节泵,它可以覆盖从2.3μm到4.9μm的中红外区域。波长。通过由Yb:KGW激光器泵浦的后置放大光学参量振荡器,用飞秒脉冲将纤芯直径为7和9μm的As2S3硫族化物阶跃光纤泵浦到2.5μm至4.1μm的不同波长。通过改变泵浦波长,纤芯直径,光纤长度和泵浦功率来研究超连续谱的光谱行为。自相位调制被认为是正常色散状态下的主要扩展机制。由于它的高亮度,如在约3.5μm的CS2吸收带上显示,该来源有望成为红外光谱的出色实验室工具。 (C)2015年美国眼镜学会

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