材料科学
空中骑兵
拓扑序
光子学
拓扑(电路)
掉期(金融)
拓扑量子数
自旋(空气动力学)
光学物理学
拓扑缺陷
简并能级
拓扑简并
限制
磁场
工作(物理)
涡流
测距
拓扑动力学
物理
作者
Yuanhao Lang,Quan Xu,Fan Huang,Xinyao Yuan,Xiaohan Jiang,Xueqian Zhang,Jianqiang Gu,Luping Du,Xiaocong Yuan,Changxu Liu,Jiaguang Han,Weili Zhang
标识
DOI:10.1002/adma.202507528
摘要
Topological textures exemplify matter and energy configuration governed by inherent physical laws. Recently skyrmion-like textures possessing fixed topology have been realized in diverse optical systems, ranging from evanescent fields, structured media to free space. Magnetic skyrmions, with their tunable topological features via external stimuli, hold promise for innovative devices, such as memory, logic gates, and neuromorphic computing. However, achieving dynamic control over non-trivial topological transitions in optical counterparts remains elusive, limiting their application in areas such as super-resolution imaging and information processing. In this study, a platform is proposed and demonstrated for producing optical spin multimerons via multiple plasmonic vortex interference. More importantly, to manipulate the multimeron topology is managed by tuning the topology of the incident light, experimentally observing a topological transition with a nontrivial swap of the skyrmion number. This work broadens the scope of optical topological textures or quasiparticles, providing insights into their formation and transition mechanisms.
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