论文标题
60 nm-Span波长可触摸涡流激光器,带有腔内等离子体上的跨膜膜
60-nm-span wavelength-tunable vortex fiber laser with intracavity plasmon metasurfaces
论文作者
论文摘要
波长可触摸的涡旋光纤激光器可以产生带有轨道角动量的光束(OAM)对大容量光学通信产生了极大的兴趣。然而,由于带宽狭窄和/或插入模式转换组件的损失,传统涡旋光纤激光器的波长可调性受到35 nm的范围的限制。除了紧凑的平面组件以外,光学元面积可以在广泛的波长范围内灵活地操纵光线。在这里,我们首次提出和证明,据我们所知,跨表面辅助的涡旋光纤激光器可以直接生成带有可变拓扑电荷的OAM梁。由于设计的宽带间隙表面的等离子体跨表面与腔内可调滤器结合使用,该激光器可以从1015 nm到1075 nm连续调谐到中心波长的OAM束,几乎是其他涡流光纤激光器有史以来的两次。可以随意设计元表面,以满足对激光的低泵阈值或高坡度效率的要求。此外,可以扩展腔度 - 地表构型以在不同的波长区域生成更高阶的OAM梁或更复杂的结构化束,这大大扩展了开发低成本和高质量结构化梁激光源的可能性。
Wavelength-tunable vortex fiber lasers that could generate beams carrying orbital angular momentum (OAM) hold great interest in large-capacity optical communications. The wavelength tunability of conventional vortex fiber lasers is however limited by the range of 35 nm due to narrow bandwidth and/or insertion loss of mode conversion components. Optical metasurfaces apart from being compact planar components can flexibly manipulate light with high efficiency in a broad wavelength range. Here, we propose and demonstrate for the first time, to the best of our knowledge, a metasurface-assisted vortex fiber laser that can directly generate OAM beams with changeable topological charges. Due to the designed broadband gap-surface plasmon metasurface, combined with an intracavity tunable filter, the laser enables OAM beam with center wavelength continuously tunable from 1015 nm to 1075 nm, nearly twice of other vortex fiber lasers ever reported. The metasurface can be designed at will to satisfy requirements for either low pump threshold or high slope efficiency of the laser. Furthermore, the cavity-metasurface configuration can be extended to generate higher-order OAM beams or more complex structured beams in different wavelength regions, which greatly broadens the possibilities for developing low-cost and high-quality structured-beam laser sources.