Chen Lei, Han Ya, Liu Qian, Liu Yan-Ge, Zhang Weigang, Chou Keng C
Opt Lett. 2018 Apr 15;43(8):1662-1665. doi: 10.1364/OL.43.001662.
After a fiber Bragg grating (FBG) is fabricated, the reflection spectrum of the FBG is generally not tunable without mechanical deformation or temperature adjustment. Here we present a microcavity-coupled FBG with both a tunable reflection lineshape and dispersion using electromagnetically induced transparency. The Fano interference of light in the FBG and the microcavity allows for dramatic modification of the reflection spectrum. The phase of the reflected spectrum is continuously tunable between 0 and 2π to produce various Fano lineshapes. The dispersion of the output light is adjustable from normal dispersion to abnormal dispersion, consequently providing an adjustable speed of light. Additionally, it allows the FBG to switch from a notch filter to a bandpass filter at the resonant wavelength, which is not possible in a conventional uniform FBG.
在制造光纤布拉格光栅(FBG)之后,若不进行机械变形或温度调节,FBG的反射光谱通常是不可调谐的。在此,我们展示了一种利用电磁诱导透明实现反射线形和色散均可调谐的微腔耦合FBG。FBG和微腔中光的法诺干涉能够显著改变反射光谱。反射光谱的相位可在0到2π之间连续调谐,以产生各种法诺线形。输出光的色散可从正常色散调节到反常色散,从而提供可调的光速。此外,它还能使FBG在共振波长处从陷波滤波器切换为带通滤波器,这在传统均匀FBG中是无法实现的。