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基于超材料集成长波红外焦平面阵列的圆偏振成像

Circular Polarimetric Imaging with a Metamaterial Integrated Long-Wavelength Infrared Focal Plane Array.

作者信息

Zhu Tianyun, Wang Ling, Jing Wenji, Deng Jie, Ye Jiexian, Zhang Yujie, Chu Zeshi, Zhou Jing, Chen Xiaoshuang, Li Xiangyang, Lu Wei, Shen Xuechu

机构信息

State Key Laboratory of Infrared Physics, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, 500 Yu Tian Road, Shanghai, 200083, China.

University of Chinese Academy of Sciences, 19 Yuquan Road, Beijing, 100049, China.

出版信息

Adv Sci (Weinh). 2025 Jul 25:e09292. doi: 10.1002/advs.202509292.

Abstract

Long-wavelength infrared (LWIR) circular polarimetric imaging plays an important role in many areas. The immediacy of polarimetric imaging and the miniaturization of devices drive considerable efforts to division-of-focal-plane-array (DoFPA) circular polarimeters. However, the realization of such detectors is hampered by low polarization discrimination, reduced absorption in the detection material, and fabrication complexity. The situation becomes more serious in the LWIR range since the pixel size is only a few wavelengths of the incident light. Here, a quantum well infrared photodetector based LWIR DoFPA circular polarimeter featuring a 320 × 256 pixel array integrated with a chiral meta-mirror array is established. The spectral range of this detector is from 10 to 11 µm. Taking advantage of the dual polarization selection, a CPER of 23.3 is achieved for the pixels integrated with the same chiral meta-mirror structure, and a CPER of 5.67 for the pixels integrated with left- and right-handed chiral meta-mirror structures in a checkerboard pattern. The peak responsivity is improved by a factor of 9.13 compared to a standard reference device. With the LWIR DoFPA circular polarimeter, Stokes parameter S imaging is achieved with a noise equivalent S difference of 1.16×10, and demonstrate background suppression and target highlighting.

摘要

长波红外(LWIR)圆偏振成像在许多领域发挥着重要作用。偏振成像的即时性和设备的小型化推动了对焦平面阵列(DoFPA)圆偏振仪的大量研究。然而,这种探测器的实现受到低偏振鉴别率、探测材料中吸收率降低以及制造复杂性的阻碍。在LWIR范围内,情况变得更加严峻,因为像素尺寸仅为入射光波长的几倍。在此,建立了一种基于量子阱红外探测器的LWIR DoFPA圆偏振仪,其具有集成了手性超表面阵列的320×256像素阵列。该探测器的光谱范围为10至11μm。利用双偏振选择,对于集成相同手性超表面结构的像素,圆偏振消光比(CPER)达到23.3,对于以棋盘图案集成左旋和右旋手性超表面结构的像素,CPER为5.67。与标准参考器件相比,峰值响应率提高了9.13倍。利用LWIR DoFPA圆偏振仪,实现了斯托克斯参数S成像,噪声等效S差为1.16×10,并展示了背景抑制和目标突出效果。

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