A Very Fast Single-Step Process for Optical Microfiber Long Period Gratings Fabrication

超细纤维 材料科学 光学 制作 光纤 折射率 光纤布拉格光栅 干涉测量 单模光纤 栅栏 衍射光栅 光电子学 渐变折射率纤维 光纤传感器 物理 病理 复合材料 医学 替代医学
作者
Mohammad Hassan Maghsoudian,Hamidreza Karimi–Alavijeh
出处
期刊:Journal of Lightwave Technology [Institute of Electrical and Electronics Engineers]
卷期号:40 (24): 7930-7936 被引量:4
标识
DOI:10.1109/jlt.2022.3204869
摘要

Optical microfiber long period gratings (MLPGs) with advantages such as low insertion loss, polarization independence, high resonance dip, and simple configuration are broadly involved in different applications, including fiber optics micro-scale components and sensors. However, it is still a grand challenge to fabricate MLPGs by using current long-time multistep processes. Herein, based on the typical arc-discharge fiber heating and pulling technique, a very fast single-step process for MLPGs fabrication is presented. In this process, the applied fiber heating arc-discharge is functionalized by a series of narrow OFF-pulses to simultaneously modulate the being pulled microfibers. Through the developed one-step technique, a low-loss adiabatic optical microfiber with a periodic array of micro-tapers along its waist region is implemented in less than 100 s, which is much faster than current methods. It is shown that the realized single-step MLPGs with the diameter of 20 μm are characterized by high resonance dip (>27 dB), low transmission loss (≤1.2 ± 0.2 dB), narrow FWHM (<20 nm), and high repeatability. The measured external refractive index (RI) sensitivity and temperature dependency of the gratings are 744 nm/RI-unit and 12 pm/°C, respectively. The results of this study could be of interest for the applications of the MLPGs for miniature fiber optics elements and sensors realization.
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