论文标题

基于嵌套涡流结和链接的高容量拓扑编码

High capacity topological coding based on nested vortex knots and links

论文作者

Kong, Ling-Jun, Zhang, Weixuan, Peng, Li, Guo, Xuyue, Zhang, Jingfeng, Zhang, Furong, Zhao, Jianlin, Zhang, Xiangdong

论文摘要

由于其异国情调的拓扑特征,光学结和链接引起了人们的极大关注。最近的研究表明,基于光学结的信息可以具有针对外部扰动的强大特征。但是,作为卓越的编码方案,还必须实现高容量,由于相关拓扑不变的限量,现有的打结器很难实现。因此,如何以高容量来实现基于结的信息编码是要解决的关键问题。在这里,我们创建了一种嵌套涡流结,并表明它可以用大量内在拓扑不变的高容量来实现强大的信息编码。在实验中,我们设计和制造跨表面全息图,以生成维持不同种类嵌套涡流链路的光场。此外,我们根据这些拓扑光学结核实高容量编码方案的可行性。我们的工作开辟了另一种实现强大和高容量光学编码的方法,这可能会对信息传输和存储领域产生有用的影响。

Optical knots and links have attracted great attention because of their exotic topological characteristics. Recent investigations have shown that the information encoding based on optical knots could possess robust features against external perturbations. However, as a superior coding scheme, it is also necessary to achieve a high capacity, which is hard to be fulfilled by existing knot-carriers owing to the limit number of associated topological invariants. Thus, how to realize the knot-based information coding with a high capacity is a key problem to be solved. Here, we create a type of nested vortex knot, and show that it can be used to fulfill the robust information coding with a high capacity assisted by a large number of intrinsic topological invariants. In experiments, we design and fabricate metasurface holograms to generate light fields sustaining different kinds of nested vortex links. Furthermore, we verify the feasibility of the high-capacity coding scheme based on those topological optical knots. Our work opens another way to realize the robust and high capacity optical coding, which may have useful impacts on the field of information transfer and storage.

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