Zhang Wenhui, Cao Liangcai, Jin Guofan, Brady David
Appl Opt. 2018 Jan 1;57(1):A164-A171. doi: 10.1364/AO.57.00A164.
Grating-based single-shot digital lens-free holography with spatial spectral multiplexing is proposed to realize full field-of-view (FOV) imaging for weak-scattering objects. Multiple object waves are generated by a one-dimensional grating that is placed in near contact with the object to avoid the cross talk among different diffraction orders during reconstruction. A multiplexed off-axis hologram is created by interference between the object waves and reference wave and captured by an image sensor in one shot. Multiple imaging areas corresponding to the captured object waves can be simultaneously retrieved during reconstruction. A formula which guarantees full FOV imaging without cross talk or information loss is presented. The imaging experiments of a USAF resolution target are presented to demonstrate the feasibility of this method.
提出了一种基于光栅的具有空间光谱复用的单次数字无透镜全息术,以实现对弱散射物体的全视场(FOV)成像。通过将一维光栅放置在与物体近接触的位置来产生多个物波,以避免重建过程中不同衍射级之间的串扰。通过物波与参考波之间的干涉创建复用离轴全息图,并由图像传感器一次捕获。在重建过程中可以同时检索与捕获的物波相对应的多个成像区域。给出了一个保证全视场成像无串扰或信息丢失的公式。进行了美国空军分辨率靶标的成像实验,以证明该方法的可行性。