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Full-complex amplitude modulation with binary spatial light modulators

机译:具有二进制空间光调制器的全复振幅调制

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Imperfections and nonrobust behavior of practical multilevel spatial light modulators (SLMs) degrade the performance of many proposed full-complex amplitude modulation schemes. We consider the use of more robust binary SLMs for this purpose. We propose a generic method, by which, out of K binary (or 1 bit) SLMs of size M X N, we effectively create a new 2~(K)-level (or K bit) SLM of size M X N. The method is a generalization of the well-known concepts of bit plane representation and decomposition for ordinary gray scale digital images and relies on forming a properly weighted superposition of binary SLMs. When K is sufficiently large, the effective SLM can be regarded as a full-complex one. Our method is as efficient as possible from an information theoretical perspective. A 4f system is discussed as a possible optical implementation. This 4f system also provides a means for eliminating the undesirable higher diffraction orders. The components of the 4f system can easily be customized for different production technologies.
机译:实用的多级空间光调制器(SLM)的缺陷和不稳健的性能会降低许多建议的全复杂幅度调制方案的性能。我们考虑将更健壮的二进制SLM用于此目的。我们提出了一种通用方法,通过该方法,在K个大小为MXN的二进制(或1位)SLM中,我们可以有效地创建一个新的大小为MX N的2〜(K)级(或K位)的SLM。普通灰度数字图像的位平面表示和分解的众所周知概念的一般化,并依赖于形成二进制SLM的适当加权叠加。当K足够大时,有效SLM可以看作是全复杂的SLM。从信息理论的角度来看,我们的方法尽可能高效。讨论了4f系统作为一种可能的光学实现。该4f系统还提供了消除不必要的更高衍射级的方法。 4f系统的组件可以轻松地针对不同的生产技术进行定制。

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