Gnanasambandam Abhiram, Elgendy Omar, Ma Jiaju, Chan Stanley H
Opt Express. 2019 Jun 10;27(12):17298-17310. doi: 10.1364/OE.27.017298.
Quanta Image Sensor (QIS) is a single-photon detector designed for extremely low light imaging conditions. Majority of the existing QIS prototypes are monochrome based on single-photon avalanche diodes (SPAD). Passive color imaging has not been demonstrated with single-photon detectors due to the intrinsic difficulty of shrinking the pixel size and increasing the spatial resolution while maintaining acceptable intra-pixel cross-talk. In this paper, we present image reconstruction of the first color QIS with a resolution of 1024 × 1024 pixels, supporting both single-bit and multi-bit photon counting capability. Our color image reconstruction is enabled by a customized joint demosaicing-denoising algorithm, leveraging truncated Poisson statistics andvariance stabilizing transforms. Experimental results of the new sensor and algorithm demonstrate superior color imaging performance for very low-light conditions with a mean exposure of as low as a few photons per pixel in both real and simulated images.
量子图像传感器(QIS)是一种为极低光照成像条件设计的单光子探测器。现有的大多数QIS原型基于单光子雪崩二极管(SPAD),是单色的。由于在保持可接受的像素内串扰的同时缩小像素尺寸和提高空间分辨率存在固有困难,单光子探测器尚未实现被动彩色成像。在本文中,我们展示了首款分辨率为1024×1024像素的彩色QIS的图像重建,它支持单比特和多比特光子计数能力。我们的彩色图像重建由定制的联合去马赛克 - 去噪算法实现,该算法利用截断泊松统计和方差稳定变换。新传感器和算法的实验结果表明,在非常低光照条件下,无论是真实图像还是模拟图像,平均曝光低至每像素仅几个光子时,其彩色成像性能都非常出色。