Agour Mostafa, Falldorf Claas, Bergmann Ralf B
Opt Express. 2016 Jun 27;24(13):14393-405. doi: 10.1364/OE.24.014393.
We present a new method for the generation of a dynamic wave field with high space bandwidth product (SBP). The dynamic wave field is generated from several wave fields diffracted by a display which comprises multiple spatial light modulators (SLMs) each having a comparably low SBP. In contrast to similar approaches in stereoscopy, we describe how the independently generated wave fields can be coherently superposed. A major benefit of the scheme is that the display system may be extended to provide an even larger display. A compact experimental configuration which is composed of four phase-only SLMs to realize the coherent combination of independent wave fields is presented. Effects of important technical parameters of the display system on the wave field generated across the observation plane are investigated. These effects include, e.g., the tilt of the individual SLM and the gap between the active areas of multiple SLMs. As an example of application, holographic reconstruction of a 3D object with parallax effects is demonstrated.
我们提出了一种用于生成具有高空间带宽积(SBP)的动态波场的新方法。该动态波场由显示器衍射产生的多个波场生成,该显示器包含多个空间光调制器(SLM),每个空间光调制器的SBP相对较低。与立体视觉中的类似方法不同,我们描述了如何将独立生成的波场进行相干叠加。该方案的一个主要优点是显示系统可以扩展以提供更大的显示屏。提出了一种由四个纯相位SLM组成的紧凑实验配置,以实现独立波场的相干组合。研究了显示系统的重要技术参数对整个观察平面上生成的波场的影响。这些影响包括例如单个SLM的倾斜以及多个SLM的有源区域之间的间隙。作为应用示例,展示了具有视差效果的三维物体的全息重建。