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在非瞬时非线性作用下液芯光纤中产生的所有正常色散超连续谱。

All normal dispersion supercontinuum generation in a liquid-core fiber under noninstantaneous nonlinearity.

作者信息

Chu Van Lanh, Chu Van Ben, Hoang Van Thuy

出版信息

Opt Express. 2025 Mar 10;33(5):10198-10211. doi: 10.1364/OE.548105.

Abstract

Liquid-core fibers, which are hollow core fibers or capillaries filled with liquids as core materials, have been attractively explored for various applications, especially in nonlinear optofluidics. High nonlinear refractive indices of selected liquids enable broadband supercontinuum generation. Unlike solid glasses, the nonlinear properties of liquids are more complex, including a contribution of electro-bound (instantaneous) nonlinearity and molecular rotation and vibration under external laser pulses (i.e., noninstantaneous nonlinearity). While the role of noninstantaneous nonlinearity in pulse evolution under anomalous dispersion has been extensively studied, its effect on pulse broadening in normal dispersion regimes remains unexplored. In this work, we numerically simulate pulse evolution in a liquid-core fiber with normal dispersion and high noninstantaneous nonlinearity. The results point out that this nonlinearity leads to narrow bandwidth and asymmetry spectrum of self-phase modulation and enhances simulated Raman scattering even at a low input power. High nonlinearity of the liquid provides an octave spanning supercontinuum generation (e.g., 1050-2700 nm with 1 kW input peak power and 20 ps input pulse-width); however, noninstantaneous nonlinearity significantly decreases the coherence through simulated Raman scattering. These results are valuable for understanding light-liquid interactions, not only for supercontinuum generation but also for applications in optofluidic lasers and sensors.

摘要

液芯光纤是一种空心光纤或填充液体作为芯材的毛细管,已被广泛探索用于各种应用,特别是在非线性光流体学领域。所选液体的高非线性折射率能够实现宽带超连续谱的产生。与固体玻璃不同,液体的非线性特性更为复杂,包括电束缚(瞬时)非线性以及在外部激光脉冲作用下分子的旋转和振动(即非瞬时非线性)。虽然非瞬时非线性在反常色散下脉冲演化中的作用已得到广泛研究,但其在正常色散区域对脉冲展宽的影响仍未被探索。在这项工作中,我们对具有正常色散和高非瞬时非线性的液芯光纤中的脉冲演化进行了数值模拟。结果表明,这种非线性会导致自相位调制的带宽变窄和光谱不对称,并且即使在低输入功率下也会增强模拟的拉曼散射。液体的高非线性能够产生跨越倍频程的超连续谱(例如,输入峰值功率为1kW、输入脉冲宽度为20ps时,超连续谱范围为1050 - 2700nm);然而,非瞬时非线性会通过模拟的拉曼散射显著降低相干性。这些结果对于理解光与液体之间的相互作用具有重要价值,不仅对于超连续谱的产生,而且对于光流体激光器和传感器的应用都具有重要意义。

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