Bi Wanjun, Gao Juanjuan, Li Xia, Xiong Liangming, Liao Meisong
Appl Opt. 2016 Aug 10;55(23):6355-62. doi: 10.1364/AO.55.006355.
A mid-infrared supercontinuum (SC) light source, which has important applications in many fields, has been extensively investigated in soft glass fibers. However, the poor instinct properties of soft glass fibers and the development of ultrashort pulse lasers left an opportunity for mid-infrared SC generation in silica fiber. Until now, silica fiber has been the commonly used medium for SC generation due to its outstanding properties. In this paper, mid-infrared SC generation in short silica photonic crystal fibers (PCFs) is investigated theoretically and systematically. In the case of a 1550�nm pump, the soliton self-frequency shift effect is utilized to extend the long wavelength edge of SC. Adopting a fiber that has a zero dispersion wavelength away from the pump pulse is a benefit for the suppression of blue spectral component and energy distribution in the long wavelength band. In the case of a 1950�nm pump, the generation of a red-shifted dispersive wave is an efficient way to extend the long wavelength edge of SC. Additionally, the coherence for femtosecond pulse pumping is discussed in this paper. Finally, the long wavelength edge of SC is beyond 3000�nm when a 1950�nm femtosecond pump pulse propagates in a PCF with negative dispersive slope around the pump pulse.
一种在许多领域都有重要应用的中红外超连续谱(SC)光源,已在软玻璃光纤中得到广泛研究。然而,软玻璃光纤较差的固有特性以及超短脉冲激光器的发展,为在石英光纤中产生中红外超连续谱留下了契机。到目前为止,石英光纤因其优异的特性一直是产生超连续谱常用的介质。本文对短石英光子晶体光纤(PCF)中中红外超连续谱的产生进行了理论和系统的研究。在1550纳米泵浦的情况下,利用孤子自频移效应来扩展超连续谱的长波长边缘。采用零色散波长远离泵浦脉冲的光纤有利于抑制蓝色光谱成分并使能量分布在长波长波段。在1950纳米泵浦的情况下,产生红移色散波是扩展超连续谱长波长边缘的有效方法。此外,本文还讨论了飞秒脉冲泵浦的相干性。最后,当1950纳米飞秒泵浦脉冲在泵浦脉冲周围具有负色散斜率的光子晶体光纤中传播时,超连续谱的长波长边缘超过3000纳米。