Guan Chunsheng, Wang Zhuochao, Ding Xumin, Zhang Kuang, Ratni Badreddine, Burokur Shah Nawaz, Jin Ming, Wu Qun
Opt Express. 2019 Mar 4;27(5):7108-7119. doi: 10.1364/OE.27.007108.
In this paper, coding Huygens' metasurface (CHM) is proposed for holographic imaging with enhanced quality. A weighted holographic algorithm is used to calculate the phase distribution at the interface and to design the CHM. Experimental demonstration performed in the microwave region validates holographic imaging with the ability to modulate energy distribution among focal points and improve image quality. By judiciously engineering both electric and magnetic dipolar resonators, the proposed digital Huygens' meta-atom is able to provide a full transmission-phase covering the whole range of 2π together with a near-unity transmission efficiency. The proof-of-concept experiments show that holographic imaging quality can be indeed improved by using digital meta-atoms with several bits. Furthermore, the modulation of intensity distribution among focal points is experimentally realized by using the 3-bits CHM. The proposed CHM hologram shows great potential in a variety of application fields, such as programmable high-resolution imaging lenses, microscopy, data storage, information processing, and computer-generated holograms.
本文提出了用于高质量全息成像的编码惠更斯超表面(CHM)。采用加权全息算法来计算界面处的相位分布并设计CHM。在微波区域进行的实验演示验证了全息成像能够调制焦点之间的能量分布并提高图像质量。通过精心设计电偶极子和磁偶极子谐振器,所提出的数字惠更斯元原子能够提供覆盖整个2π范围的全透射相位以及接近单位的透射效率。概念验证实验表明,使用具有多位的数字元原子确实可以提高全息成像质量。此外,通过使用3位CHM在实验上实现了焦点之间强度分布的调制。所提出的CHM全息图在各种应用领域中显示出巨大潜力,例如可编程高分辨率成像透镜、显微镜、数据存储、信息处理和计算机生成全息图。