Dossou Kokou B
Appl Opt. 2016 May 20;55(15):3915-24. doi: 10.1364/AO.55.003915.
We consider the spectral response of moving diffraction gratings, in which the incident light extends over a broad angular range and where the diffracted light is observed from a specific angle. We show that the dispersion relation between the frequency perceived by an observer who is looking at a moving grating and the incident frequency can exhibit some unique features, such as a flat band (i.e., a local minimum). An observer can see the light diffracted into a nonspecular diffraction order from a multitude of incident light rays, and the angle of incidence of each ray is frequency dependent; as a consequence, when the grating is moving, each incident ray experiences a Doppler shift in frequency that depends on its angle of incidence. We find that remarkable features appear near a Wood anomaly where the angle of incidence, for a given diffraction angle, can change very quickly with frequency. This means that light of multiple frequencies and incident from multiple angles can be mixed by the motion of the grating into the same diffracted ray and their frequencies can be compressed into a narrower range. The existence of a flat band means that a moving grating can be used as a device to increase the intensity of the perceived diffracted light due to spectral compression. The properties of a grating in motion in sunlight can also be relevant to the study of naturally occurring gratings which are typically in oscillatory motion.
我们考虑移动衍射光栅的光谱响应,其中入射光在很宽的角度范围内传播,且从特定角度观察衍射光。我们表明,观察移动光栅的观察者所感知的频率与入射频率之间的色散关系可能呈现出一些独特特征,比如平带(即局部最小值)。观察者可以看到从众多入射光线衍射到非镜面衍射级次的光,并且每条光线的入射角都与频率有关;因此,当光栅移动时,每条入射光线都会经历频率上的多普勒频移,该频移取决于其入射角。我们发现,在伍德异常附近会出现显著特征,对于给定的衍射角,入射角会随频率迅速变化。这意味着来自多个角度且频率不同的光可以通过光栅的移动混合到同一衍射光线中,并且它们的频率可以被压缩到更窄的范围内。平带的存在意味着移动光栅可作为一种通过光谱压缩来增加所感知衍射光强度的装置。在阳光下运动的光栅的特性也可能与对通常处于振荡运动的自然光栅的研究相关。