Théberge Francis, Thiré Nicolas, Daigle Jean-François, Mathieu Pierre, Schmidt Bruno E, Messaddeq Younès, Vallée Réal, Légaré François
Opt Lett. 2014 Nov 15;39(22):6474-7. doi: 10.1364/OL.39.006474.
We report on infrared supercontinuum (SC) generation through laser filamentation and subsequent nonlinear propagation in a step-index As2S3 fiber. The 100 μm core and high-purity As2S3 fiber used exhibit zero-dispersion wavelength around 4.5 μm, a mid-infrared background loss of 0.2 dB/m, and a maximum loss of only 0.55 dB/m at the S-H absorption peak around 4.05 μm. When pumping with ultrashort laser pulses slightly above the S-H absorption band, broadband infrared supercontinua were generated with a 20 dB spectral flatness spanning from 1.5 up to 7 μm. The efficiency and spectral shape of the SC produced by ultrashort pulses in large-core As2S3 fiber are mainly determined by its dispersion, the S-H contaminant absorption, and the mid-infrared nonlinear absorption.
我们报道了通过激光成丝以及随后在阶跃折射率As2S3光纤中的非线性传播来产生红外超连续谱(SC)的情况。所使用的100μm芯径的高纯度As2S3光纤在4.5μm左右呈现零色散波长,中红外背景损耗为0.2dB/m,并且在4.05μm左右的S-H吸收峰处最大损耗仅为0.55dB/m。当用略高于S-H吸收带的超短激光脉冲泵浦时,产生了宽带红外超连续谱,其光谱平坦度为20dB,范围从1.5μm到7μm。大芯径As2S3光纤中超短脉冲产生的超连续谱的效率和光谱形状主要由其色散、S-H杂质吸收以及中红外非线性吸收决定。