Tailoring ultra-high-order optical skyrmions
Tailoring ultra-high-order optical skyrmions
Skyrmions, as quasiparticles with topological spin textures, has recently garnered great attention for both condensed matter and structured wave communities, promising next-generation large-density robust information technologies. However, a big challenge to this end is that the generation of high-order skyrmions is elusive in any physical systems. Here, we propose the method to create and control ultra-high-order skyrmions (skyrmion number up to $400^{th}$) in a structured light system. We also experimentally control the topological state transition between bimeron and skyrmion, arbitrarily tailor the transverse size of an arbitrary-order skyrmionic beam independent of topological number, and ensure the topological stability upon propagation. Our work offers solutions for topologically resilient communication and memory with much enhanced information capacity.
Yongkun Zhou、Xinji Zeng、Jing Fang、Haijun Wu、Jinwen Wang、Yun Chen、Xin Yang、Chengyuan Wang、Dong Wei、Haixia Chen、Hong Gao、Yijie Shen
信息科学、信息技术自然科学研究方法
Yongkun Zhou,Xinji Zeng,Jing Fang,Haijun Wu,Jinwen Wang,Yun Chen,Xin Yang,Chengyuan Wang,Dong Wei,Haixia Chen,Hong Gao,Yijie Shen.Tailoring ultra-high-order optical skyrmions[EB/OL].(2025-05-06)[2025-06-14].https://arxiv.org/abs/2505.03272.点此复制
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