Ahn Tae-Jung, Moon Sucbei
Opt Lett. 2019 May 15;44(10):2546-2549. doi: 10.1364/OL.44.002546.
We present an optically tunable fiber Bragg grating (FBG) based on a photo-mechanical tuning mechanism. Azobenzene containing polymer was utilized as a photo-mechanical tuning agent coated over a bare section of FBG. Controlled by ultraviolet (UV) irradiation, the polymer coating acts as a micro-actuator that deforms the fiber structure. Reversible tunability was obtained by the coating locally stretching the embedded FBG fiber by the intensity and the spatial distribution of the UV light. We found that our tunable FBG could linearly tune its center wavelength as large as 2.2 nm in a symmetric UV irradiation. We also found that a chirp of grating periods could be produced by an asymmetric irradiation, where the center of the UV irradiation profile is offset to that of the FBG device. The spectral width measured at 10 dB could be broadened from 0.4 to 1.2 nm by simply adjusting the relative position of the UV light source. The direction of the chirp, in either normal or anomalous dispersion, could be easily switched as well. Our observations demonstrated that our device provides a versatile means of tunable filters or dispersion generators, which is useful in various applications.
我们展示了一种基于光机械调谐机制的光学可调谐光纤布拉格光栅(FBG)。含偶氮苯的聚合物被用作光机械调谐剂,涂覆在FBG的裸光纤段上。在紫外(UV)光照射的控制下,聚合物涂层充当微致动器,使光纤结构发生变形。通过紫外光的强度和空间分布,涂层使嵌入的FBG光纤局部拉伸,从而实现了可逆调谐。我们发现,在对称紫外照射下,我们的可调谐FBG能够将其中心波长线性调谐高达2.2 nm。我们还发现,通过非对称照射可以产生光栅周期的啁啾,其中紫外照射轮廓的中心相对于FBG器件的中心发生偏移。通过简单调整紫外光源的相对位置,在10 dB处测量的光谱宽度可以从0.4 nm拓宽到1.2 nm。正常或反常色散情况下的啁啾方向也可以轻松切换。我们的观察结果表明,我们的器件提供了一种通用的可调谐滤波器或色散发生器手段,在各种应用中都很有用。