Wang Huiyang, Han Xianxin, Liu Shengde, Liu Hongzhan, Lu Xiaoxu, Rosen Joseph, Zhong Liyun
Opt Lett. 2024 Oct 15;49(20):5886-5889. doi: 10.1364/OL.538944.
Fresnel incoherent correlation holography (FINCH) records coaxial holograms for wide-field 3D imaging with incoherent light, but its temporal phase-shifting strategy makes dynamic imaging challenging. Here, we present a compact, portable single-shot mirrored phase-shifting (SSPMS) module that can be easily integrated into the FINCH system, achieving secondary modulation of self-interference beams to enable the simultaneous acquisition of four phase-shift holograms in a single exposure. Compared with previously reported methods that use diffraction gratings to spatially separate self-interference beams at specific angles, this module duplicates a laterally shifted mirrored beam using a simply modified Michelson interferometer, so the phase-shifting holograms obtained via this module are free from optical aberrations or higher-order diffracted light noises. The feasibility of the proposed method is experimentally demonstrated through imaging dynamic 3D grayscale scenes.
菲涅耳非相干相关全息术(FINCH)使用非相干光记录用于宽场三维成像的同轴全息图,但其时间相移策略使动态成像具有挑战性。在此,我们展示了一种紧凑、便携的单次反射相移(SSPMS)模块,该模块可轻松集成到FINCH系统中,实现对自干涉光束的二次调制,从而在单次曝光中同时采集四张相移全息图。与先前报道的使用衍射光栅以特定角度在空间上分离自干涉光束的方法相比,该模块使用经过简单修改的迈克尔逊干涉仪复制横向偏移的反射光束,因此通过该模块获得的相移全息图不受光学像差或高阶衍射光噪声的影响。通过对动态三维灰度场景成像,实验证明了该方法的可行性。