Chang Chenliang, Qi Yijun, Wu Jun, Xia Jun, Nie Shouping
Opt Express. 2017 Mar 20;25(6):6568-6580. doi: 10.1364/OE.25.006568.
This paper presents a method for the implementation of speckle reduced lensless holographic projection based on phase-only computer-generated hologram (CGH). The CGH is calculated from the image by double-step Fresnel diffraction. A virtual convergence light is imposed to the image to ensure the focusing of its wavefront to the virtual plane, which is established between the image and the hologram plane. The speckle noise is reduced due to the reconstruction of the complex amplitude of the image via a lensless optical filtering system. Both simulation and optical experiments are carried out to confirm the feasibility of the proposed method. Furthermore, the size of the projected image can reach to the maximum diffraction bandwidth of the spatial light modulator (SLM) at a given distance. The method is effective for improving the image quality as well as the image size at the same time in compact lensless holographic projection system.
本文提出了一种基于纯相位计算机生成全息图(CGH)实现散斑减少的无透镜全息投影方法。通过双步菲涅耳衍射从图像计算出CGH。对图像施加虚拟会聚光,以确保其波前聚焦到在图像和全息图平面之间建立的虚拟平面上。由于通过无透镜光学滤波系统重建图像的复振幅,散斑噪声得以降低。进行了模拟和光学实验以证实所提方法的可行性。此外,在给定距离处,投影图像的尺寸可达到空间光调制器(SLM)的最大衍射带宽。该方法对于在紧凑的无透镜全息投影系统中同时提高图像质量和图像尺寸是有效的。