Opt Lett. 2023 Jun 15;48(12):3279-3282. doi: 10.1364/OL.492476.
Lensless imaging with a mask is an attractive topic as it enables a compact configuration to acquire wavefront information of a sample with computational approaches. Most existing methods choose a customized phase mask for wavefront modulation and then decode the sample's wave field from modulated diffraction patterns. Different from phase masks, lensless imaging with a binary amplitude mask facilitates a cheaper fabrication cost, but high-quality mask calibration and image reconstruction have not been well resolved. Here we propose a self-calibrated phase retrieval (SCPR) method to realize a joint recovery of a binary mask and sample's wave field for a lensless masked imaging system. Compared with conventional methods, our method shows a high-performance and flexible image recovery without the help of an extra calibration device. Experimental results of different samples demonstrate the superiority of our method.
无透镜成像与掩模是一个很有吸引力的研究课题,因为它通过计算方法实现了一种紧凑的配置,从而可以获取样品的波前信息。大多数现有的方法选择定制的相位掩模进行波前调制,然后从调制的衍射图案中解码样品的波场。与相位掩模不同,无透镜成像与二进制振幅掩模有利于降低制造成本,但高质量掩模校准和图像重建尚未得到很好的解决。在这里,我们提出了一种自校准相位恢复(SCPR)方法,用于实现无透镜掩模成像系统中二进制掩模和样品波场的联合恢复。与传统方法相比,我们的方法无需额外的校准设备即可实现高性能和灵活的图像恢复。不同样本的实验结果证明了我们方法的优越性。