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基于写入二氧化硅/硅酮复合光纤中的光纤布拉格光栅的全光纤滤波器。

All-optical fiber filter based on an FBG inscribed in a silica/silicone composite fiber.

作者信息

Zeng Yilong, Serandi Gunawardena Dinusha, Zhou Bin, Liu Zhengyong, Tam Hwa-Yaw

出版信息

Opt Lett. 2020 Sep 1;45(17):4831-4834. doi: 10.1364/OL.401839.

Abstract

An all-optical tunable filter based on a fiber Bragg grating (FBG) inscribed in a self-heated silica/silicone composite fiber is demonstrated. A thin silicone film is coated inside the suspended core fiber), which acts as the silicone cladding. A periodic refractive index modulation is inscribed in the silicone cladding by UV irradiation. Silicone is an organic material whose optical properties are different than silica, which leads to interesting applications. The high thermo-optic properties are studied and applied here. A 1550 nm pump laser is utilized to heat the silicone grating where a wavelength shift is observed for the gratings when subjected to different pump powers. Experimental results indicate a wavelength tuning coefficient of -0.128/ with a response time of 0.5 s to obtain a wavelength shift of 1 nm under periodic pump light. The new design of this miniature all-optical filter is cost-effective and can potentially be adhered in optical fiber sensing and communication systems.

摘要

展示了一种基于刻写在自热式二氧化硅/硅酮复合光纤中的光纤布拉格光栅(FBG)的全光可调滤波器。在悬浮芯光纤内部涂覆一层薄的硅酮薄膜,其作为硅酮包层。通过紫外线照射在硅酮包层中刻写周期性折射率调制。硅酮是一种光学性质与二氧化硅不同的有机材料,这导致了有趣的应用。在此研究并应用了其高热光特性。利用1550nm泵浦激光器加热硅酮光栅,当施加不同泵浦功率时,观察到光栅的波长偏移。实验结果表明,在周期性泵浦光下,波长调谐系数为-0.128/,响应时间为0.5s,以获得1nm的波长偏移。这种微型全光滤波器的新设计具有成本效益,并且有可能应用于光纤传感和通信系统。

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