论文标题

基于非线性跨表面的光学地址空间调制器

Optically Addressed Spatial Light Modulator based on Nonlinear Metasurface

论文作者

Gong, Shengchao, Ren, Mengxin, Wu, Wei, Cai, Wei, Xu, Jingjun

论文摘要

空间光调节器(SLM)是用于调节光束幅度,相位或极化的设备。从我们的日常娱乐到科学研究的许多领域,此类设备一直在许多领域发挥不可或缺的影响。在过去的几十年中,SLM主要以电气寻址(EASLM)方式运行,其中写入图像是通过常规电子界面创建和加载的。但是,采用像素化电极对EASLM的分辨率和效率均限制。在这里,我们提出了一个基于非线性跨表面(MS-OASLM)的光学上的SLM,该SLM通过另一个不需要电极的写作光束直接调节信号光。 MS-OASLM表现出前所未有的紧凑性,总厚度为400 nm,受益于元图的出色非线性。它们的亚波长度大小可实现高达250行对的高分辨率,每毫米比任何当前商业SLM都要好一个以上。这样的MS-OASLM可以提供开发下一代高分辨率显示和全光信息处理技术的机会。

Spatial light modulators (SLMs) are devices for modulating amplitude, phase or polarization of a light beam on demand. Such devices have been playing an indispensable inuence in many areas from our daily entertainments to scientific researches. In the past decades, the SLMs have been mainly operated in electrical addressing (EASLM) manner, wherein the writing images are created and loaded via conventional electronic interfaces. However, adoption of pixelated electrodes puts limits on both resolution and efficiency of the EASLMs. Here, we present an optically addressed SLM based on a nonlinear metasurface (MS-OASLM), by which signal light is directly modulated by another writing beam requiring no electrode. The MS-OASLM shows unprecedented compactness and is 400 nm in total thickness benefitting from the outstanding nonlinearity of the metasurface. And their subwavelength feature size enables a high resolution up to 250 line pairs per millimeter, which is more than one order of magnitude better than any currently commercial SLMs. Such MS-OASLMs could provide opportunities to develop the next generation of high resolution displays and all-optical information processing technologies.

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