Zheng Guoxing, Zhou Nan, Deng Liangui, Li Gongfa, Tao Jin, Li Zile
Opt Express. 2021 Jan 18;29(2):2920-2930. doi: 10.1364/OE.417202.
Conventional metasurface holography is usually implemented in either transmission space or reflection space. Herein, we show a dielectric metasurface that can simultaneously project two independent holographic images in the transmission and reflection spaces, respectively, merely with a single-layer design approach. Specifically, two types of dielectric nanobricks in a nanostructured metasurface are employed to act as half-wave plates for geometric phase modulation. One type of nanobrick is designed to reflect most of incident circularly-polarized light into reflection space, enabled with magnetic resonance, while another type of nanobrick transmits it into transmission space, without resonance involved. By controlling the orientation angles and randomly interleaving the two types of nanobricks to form a metasurface, a full-space metasurface hologram can be established. We experimentally demonstrate this trans-reflective meta-holography by encoding the geometric phase information of two independent images into a single metasurface, and all observed holographic images agree well with our predictions. Our research expands the field-of-view of metasurface holography from half- to full-space, which can find its markets in optical sensing, image displays, optical storages and many other potential applications.
传统的超表面全息术通常在透射空间或反射空间中实现。在此,我们展示了一种介电超表面,仅采用单层设计方法就能分别在透射和反射空间中同时投射两个独立的全息图像。具体而言,在纳米结构超表面中采用两种类型的介电纳米砖作为用于几何相位调制的半波片。一种类型的纳米砖被设计用于将大部分入射圆偏振光反射到反射空间,通过磁共振实现,而另一种类型的纳米砖将其透射至透射空间,不涉及共振。通过控制取向角并随机交错排列这两种类型的纳米砖以形成超表面,可以建立全空间超表面全息图。我们通过将两个独立图像的几何相位信息编码到单个超表面中来实验演示这种透反射超全息术,并且所有观察到的全息图像与我们的预测非常吻合。我们的研究将超表面全息术的视场从半空间扩展到了全空间,这在光学传感、图像显示、光存储以及许多其他潜在应用中都能找到市场。