Otón Joaquín, Ambs Pierre, Millán María S, Pérez-Cabré Elisabet
Department of Optics and Optometry, Technical University of Catalonia, Terrassa (Barcelona), Spain.
Appl Opt. 2007 Aug 10;46(23):5667-79. doi: 10.1364/ao.46.005667.
The inherent distortion of a reflective parallel aligned spatial light modulator (SLM) may need compensation not only for the backplane curvature but also for other possible nonuniformities caused by thickness variations of the liquid crystal layer across the aperture. First, we build a global look-up table (LUT) of phase modulation versus the addressed gray level for the whole device aperture. Second, when a lack of spatial uniformity is observed, we define a grid of cells onto the SLM aperture and develop a multipoint calibration. The relative phase variations between neighboring cells for a uniform gray level lead us to build a multi-LUT for improved compensation. Multipoint calibration can be done using either phase-shift interferometry or Fourier diffraction pattern analysis of binary phase gratings. Experimental results show the compensation progress in diffractive optical elements displayed on two SLMs.
反射式平行排列空间光调制器(SLM)的固有畸变可能不仅需要针对背板曲率进行补偿,还需要针对液晶层在整个孔径上厚度变化所引起的其他可能的不均匀性进行补偿。首先,我们针对整个器件孔径构建一个相位调制与寻址灰度级的全局查找表(LUT)。其次,当观察到空间均匀性不足时,我们在SLM孔径上定义一个单元格网格并进行多点校准。对于均匀灰度级,相邻单元格之间的相对相位变化促使我们构建一个多LUT以实现更好的补偿。多点校准可以使用相移干涉测量法或二元相位光栅的傅里叶衍射图案分析来完成。实验结果展示了在两个SLM上显示的衍射光学元件的补偿进展。