Moreno Ignacio, Carrión José V, Martínez José Luis, García-Martínez Pascuala, Sánchez-López María M, Campos Juan
Opt Lett. 2014 Oct 1;39(19):5483-6. doi: 10.1364/OL.39.005483.
An optical system that works as a retarder waveplate with programmable spectral retardance is proposed. The system is based on a pixelated liquid crystal on silicon (LCoS) spatial light modulator (SLM). The input light beam is spectrally dispersed and different spectral components are projected onto different pixels of the LCoS-SLM. A different retardance is then addressed for each pixel, adapted to the incoming wavelength. Light reflected from the SLM is then recombined by the same setup. In this way a programmable polarization spectrum can be encoded. We illustrate the broadband characterization that is required for proper use of the system. Then several examples are shown, including spectral compensation to yield retarders with constant retardance, retarders with abrupt changes in the spectral retardance function, or bandpass variable retarder filters. The system is also demonstrated to provide programmable light spectrum generation.
提出了一种作为具有可编程光谱延迟的延迟波片工作的光学系统。该系统基于硅基液晶(LCoS)空间光调制器(SLM)的像素化结构。输入光束进行光谱色散,不同的光谱分量投射到LCoS - SLM的不同像素上。然后针对每个像素设定不同的延迟,以适应入射波长。从SLM反射的光随后通过相同的装置重新组合。通过这种方式,可以对可编程偏振光谱进行编码。我们阐述了系统正确使用所需的宽带特性。然后展示了几个示例,包括用于产生具有恒定延迟的延迟器、光谱延迟函数具有突变的延迟器或带通可变延迟器滤波器的光谱补偿。还证明了该系统可提供可编程光谱生成。