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Super- and Anti-Principal-Modes in Multimode Waveguides

机译:多模波导中的超级和反主体模式

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We introduce special states for light in multimode waveguides featuring strongly enhanced or reduced spectral correlations in the presence of strong mode coupling. Based on the experimentally measured multispectral transmission matrix of a multimode fiber, we generate a set of states that outperform the established “principal modes” in terms of the spectral stability of their output spatial field profiles. Inverting this concept also allows us to create states with a minimal spectral correlation width, whose output profiles are considerably more sensitive to a frequency change than typical input wave fronts. The resulting “super-principal-modes” and “anti-principal-modes” are made orthogonal to each other even in the presence of mode-dependent loss. By decomposing them in the principal-mode basis, we show that the super-principal-modes are formed via interference of principal modes with close delay times, whereas the anti-principal-modes are a superposition of principal modes with the most-different delay times available in the fiber. Such novel states are expected to have broad applications in fiber communication, imaging, and spectroscopy.
机译:我们为多模波导的光引入特殊状态,在存在强大的模式耦合时具有强大增强或降低的光谱相关性。基于多模光纤的实验测量的多光谱传输矩阵,我们在其输出空间场配置文件的光谱稳定性方面产生一组状态,以优于所建立的“主模式”。反转该概念还允许我们创建具有最小频谱相关宽度的状态,其输出轮廓比典型的输入波前频率变化更敏感。即使在存在模式依赖性损耗的情况下,所得到的“超级主体模式”和“反主题”也会正交。通过将它们分解在主模式的基础上,我们表明超级主体模式是通过具有近延迟时间的主模式的干扰形成的,而防主模式是主要模式的叠加,延迟最大纤维中可用的时间。预计这种新颖的状态将在纤维通信,成像和光谱中具有广泛的应用。

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