论文标题

多模光纤中量化的锥形波

Quantized conical waves in multimode optical fibers

论文作者

Kibler, Bertrand, Béjot, Pierre

论文摘要

多模光纤已成为该平台,该平台将弥合散装介质和单模纤维中非线性光学元件之间的差距。然而,尽管对世间非线性现象和时空耦合进行了许多研究,但对这两个研究领域之间的过渡仍然不完整。在具有超短强度脉冲(即圆锥形发射,谐波产生和轻子弹)的散装培养基中观察到的一些引人注目的现象需要更深入的见解,以便在多模纤维中揭示。在这里,我们将大量培养基中描述的锥形波的概念推广到结构化培养基,例如多模光纤,其中只有离散和有限的模式才能传播。光纤的模态分布提供了通过相匹配的谐振辐射(即分散波)量化锥体发射(例如量化X波),该谐振辐射(即分散波)在时空压缩阶段中通过光学冲击或超舒波结构的种子。当相当强烈的短脉冲在多模层波导中非线性传播(无论分散体状态和波导几何形状)时,就会生成这种量化的无衍射波和无衍射波。在商业上可用的多模纤维中的未来非线性实验可能会揭示不同形式的锥体发射,并容易控制超脑灯子弹。

Multimode optical fibers has emerged as the platform that will bridge the gap between nonlinear optics in bulk media and in single-mode fibers. However, the understanding of the transition between these two research fields still remains incomplete despite numerous investigations of intermodal nonlinear phenomena and spatiotemporal coupling. Some of the striking phenomena observed in bulk media with ultrashort and ultra-intense pulses (i.e., conical emission, harmonic generation and light bullets) require a deeper insight to be possibly unveiled in multimode fibers. Here we generalize the concept of conical waves described in bulk media towards structured media, such as multimode optical fibers, in which only a discrete and finite number of modes can propagate. The modal distribution of optical fibers provides a quantization of conical emission (e.g., quantized X-waves) through phase-matched resonant radiations (i.e., dispersive waves) seeded by optical shocks or ultrashort wave structures during spatiotemporal compression stages. Such quantized dispersion- and diffraction-free waves are generated when a rather intense short pulse propagates nonlinearly in a multimode waveguide, whatever the dispersion regime and waveguide geometry. Future nonlinear experiments in commercially-available multimode fibers could reveal different forms of conical emission and an easy control of supercontinuum light bullets.

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