Wang Yue, Xi Teli, Zhang Xinyu, Guo Chengfei, Shao Xiaopeng
Opt Express. 2024 Apr 8;32(8):14154-14168. doi: 10.1364/OE.521437.
To address the problem of the time-sharing recording of dual-wavelength low-coherence holograms while avoiding the use of customized achromatic optical elements, a snapshot dual-wavelength digital holography with LED and laser hybrid illumination is proposed. In this method, the parallel phase-shifting method is firstly employed to suppress zero-order and twin-image noise, and to record a LED hologram with low speckle noise and full field of view. Secondly, another laser hologram with a different center wavelength affected by speckle noise is recorded simultaneously using the spatial multiplexing technique. Finally, dual-wavelength wrapped phase images are reconstructed from a spatial multiplexing hologram, and then are combined to achieve low-noise phase unwrapping utilizing the iterative algorithm. Simulation and optical experiments on a reflective step with a depth of 1.38µm demonstrate that the proposed method can achieve single-shot and large-range height measurements while maintaining low-noise and full-field imaging.
为了解决双波长低相干全息图的分时记录问题,同时避免使用定制的消色差光学元件,提出了一种采用发光二极管(LED)和激光混合照明的快照双波长数字全息术。在该方法中,首先采用并行相移法抑制零级和孪生像噪声,并记录具有低散斑噪声和全视场的LED全息图。其次,利用空间复用技术同时记录另一幅受散斑噪声影响、中心波长不同的激光全息图。最后,从空间复用全息图重建双波长包裹相位图像,然后利用迭代算法将其组合以实现低噪声相位解包裹。对深度为1.38μm的反射台阶进行的仿真和光学实验表明,该方法能够在保持低噪声和全场成像的同时实现单次和大范围的高度测量。