论文标题
光天际和其他拓扑清单光
Optical skyrmions and other topological quasiparticles of light
论文作者
论文摘要
天空是拓扑稳定的准颗粒,在量子场,固态物理和磁性材料中已经进行了预测和证明,但直到最近才在电磁场中观察到,从而触发了不同光谱范围和应用的快速扩展研究。在这里,我们回顾了统一框架中光学气息的最新进展。从基本理论(包括对天空状态的分类)开始,我们描述了在结构化和时间依赖的光场中各种光学天空的产生和拓扑控制。我们进一步强调了一类普遍的光学拓扑准粒子,超出了天空,并概述了新兴应用,未来趋势和开放挑战。具有多功能拓扑特征的光学准颗粒的复杂矢量场结构是现代旋转式,成像和计量学,光学力,结构光和拓扑和量子技术的重要特征。
Skyrmions are topologically stable quasiparticles that have been predicted and demonstrated in quantum fields, solid-state physics, and magnetic materials, but only recently observed in electromagnetic fields, triggering fast expanding research across different spectral ranges and applications. Here we review the recent advances in optical skyrmions within a unified framework. Starting from fundamental theories, including classification of skyrmionic states, we describe generation and topological control of different kinds of optical skyrmions in structured and time-dependent optical fields. We further highlight generalized classes of optical topological quasiparticles beyond skyrmions and outline the emerging applications, future trends, and open challenges. A complex vectorial field structure of optical quasiparticles with versatile topological characteristics emerges as an important feature in modern spin-optics, imaging and metrology, optical forces, structured light and topological and quantum technologies.