论文标题
激光纳米纹爆炸,用于在光纤中实现开放式感测
Laser Nano-Filament Explosion for Enabling Open-Grating Sensing in Optical Fibre
论文作者
论文摘要
将强的光子止动带嵌入传统的光纤中,这些光纤可以直接访问和感觉到外部环境具有挑战性,依靠乏味的纳米杂音步骤,从而导致脆弱的纤维。 Ultrashort脉冲激光丝最近提供了一种非接触手段,即在散装透明眼镜内开放高纵横比纳米骨。此方法已将其扩展到光纤,从而导致高密度通过二氧化硅覆层横向穿透的激光丝孔和引导芯,以提供电信带中高折射率对比度的Bragg Gragg。将点逐点制造与直接在紧凑和柔性纤维内部的工程蚀刻后蚀刻结合使用。由于纳米孔很容易通过完整的纤维覆层润湿,并充满了各种溶剂和油,因此提出了具有较高分辨率折射率的高分辨率折射率感测的纤维bragg光栅。
Embedding strong photonic stopbands into traditional optical fibre that can directly access and sense the outside environment is challenging, relying on tedious nanoprocessing steps that result in fragile thinned fibre. Ultrashort pulsed laser filaments have recently provided a non contact means of opening high aspect ratio nanoholes inside of bulk transparent glasses. This method has been extended here to optical fibre, resulting in high density arrays of laser filamented holes penetrating transversely through the silica cladding and guiding core to provide high refractive index contrast Bragg gratings in the telecommunication band. The point by point fabrication was combined with post-chemical etching to engineer strong photonic stopbands directly inside of the compact and flexible fibre. Fibre Bragg gratings with sharply resolved pi-shifts are presented for high resolution refractive index sensing from n = 1 to 1.67 as the nano-holes were readily wetted and filled with various solvents and oils through an intact fibre cladding.