论文标题

通过非线性频率转换多维合成手性管晶格

Multidimensional synthetic chiral-tube lattices via nonlinear frequency conversion

论文作者

Wang, Kai, Bell, Bryn, Solntsev, Alexander S., Neshev, Dragomir N., Eggleton, Benjamin J., Sukhorukov, Andrey A.

论文摘要

几何维度在离散晶格中产生的拓扑作用中起着重要的重要作用。虽然直接实验受三个空间维度的限制,但光子学自由度频率实现的合成维度的研究主题正在迅速发展。这种人工晶格中光的操纵通常是通过电声调制实现的,但是它们的操作带宽对不同频率组件之间的相互作用范围施加了实际的约束。在这里,我们提出并在实验上实现全光合成维度,涉及非线性波导中频率转换介导的离散光谱线之间的特殊量身定制的短期和长距离相互作用。我们意识到三维空间中的三角手性管晶格,并探索了它们的四维概括。我们实施一个具有非零磁通量的合成量规场,并观察到频率梳的相关多维动力学,所有动态均在一个物理空间端口内。我们预计我们的方法将为高维物理学的基本研究提供一种新的手段,并成为在时间和频域操作的光学设备中使用拓扑效应的重要一步。

Geometrical dimensionality plays a fundamentally important role in the topological effects arising in discrete lattices. While direct experiments are limited by three spatial dimensions, the research topic of synthetic dimensions implemented by the frequency degree of freedom in photonics is rapidly advancing. The manipulation of light in such artificial lattices is typically realized through electro-optic modulation, yet their operating bandwidth imposes practical constraints on the range of interactions between different frequency components. Here we propose and experimentally realize all-optical synthetic dimensions involving specially tailored simultaneous short- and long-range interactions between discrete spectral lines mediated by frequency conversion in a nonlinear waveguide. We realize triangular chiral-tube lattices in three-dimensional space and explore their four-dimensional generalization. We implement a synthetic gauge field with nonzero magnetic flux and observe the associated multidimensional dynamics of frequency combs, all within one physical spatial port. We anticipate that our method will provide a new means for the fundamental study of high-dimensional physics and act as an important step towards using topological effects in optical devices operating in the time and frequency domains.

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