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Hybrid soliton dynamics in liquid-core fibres

机译:液芯光纤中的混合孤子动力学

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摘要

The discovery of optical solitons being understood as temporally and spectrally stationary optical states has enabled numerous innovations among which, most notably, supercontinuum light sources have become widely used in both fundamental and applied sciences. Here, we report on experimental evidence for dynamics of hybrid solitons—a new type of solitary wave, which emerges as a result of a strong non-instantaneous nonlinear response in CS2-filled liquid-core optical fibres. Octave-spanning supercontinua in the mid-infrared region are observed when pumping the hybrid waveguide with a 460 fs laser (1.95 μm) in the anomalous dispersion regime at nanojoule-level pulse energies. A detailed numerical analysis well correlated with the experiment uncovers clear indicators of emerging hybrid solitons, revealing their impact on the bandwidth, onset energy and noise characteristics of the supercontinua. Our study highlights liquid-core fibres as a promising platform for fundamental optics and applications towards novel coherent and reconfigurable light sources.
机译:光学孤子的发现被理解为在时间上和光谱上都处于固定的光学状态,从而实现了众多创新,其中最显着的是,超连续谱光源已在基础科学和应用科学中得到广泛使用。在这里,我们报告混合孤子动力学的实验证据,这是一种新型的孤波,它是由填充CS2的液芯光纤中强烈的非瞬时非线性响应引起的。当在纳米焦耳级脉冲能量下以460µfs的激光(1.95µm)泵浦混合波导时,在中红外区域观察到了八度跨度的超连续谱。与实验紧密相关的详细数值分析揭示了新兴混合孤子的清晰指标,揭示了它们对超连续谱的带宽,起始能量和噪声特征的影响。我们的研究强调,液芯光纤是基本光学器件和新型相干和可重构光源应用的有前途的平台。

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