可重构性
材料科学
光纤
制作
光电子学
聚结(物理)
光通信
灵活性(工程)
折射率
光开关
光学
多模光纤
光交叉连接
光学滤波器
光学透明度
光学工程
计算机科学
纳米技术
纤维
三维光学数据存储
本质安全
限制
接口(物质)
电子工程
光学性能监测
飞秒
作者
Sai Zhao,Yijie Wang,Xinke Tang,Jiangang Zhang,Weixi Wu,Yuchen Fu,Sai Tak Chu,Yang Ren,Xia Liu,Xun Guan,Thomas P. Russell,Yu Chai
标识
DOI:10.1038/s41467-025-67954-4
摘要
Quartz optical fibers are brittle, difficult to repair, and lack reconfigurability, limiting their adaptability in underwater communication. To overcome these impediments, here we show reconfigurable all-liquid optical fibers (RAOFs) produced by structured liquid, tuned by the interfacial assembly and jamming of nanoparticle surfactants at the water-oil interface (interfacial tension <10 mN m-1, refractive index contrast of 0.083). These RAOFs combine the structural stability of the interfacial assemblies with the inherent flexibility of liquids. They support real-time communication on an Ethernet platform (up to 1 Gbps), providing a practical alternative to conventional optical fibers for optical interconnects. Their liquid nature enables broken fibers to be repaired rapidly by a coalescence process. Their softness affords on-demand reconfigurability that enables in-situ fabrication of reconfigurable optical fibers and dynamic manipulation of signal transmission. RAOFs provide a versatile, self-healing, and resilient solution for optical communication systems in dynamic environments.
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