All-dielectric six-foci metalens for infrared polarization detection based on Stokes space

Author:

Hou Enzhu,Liang Zhongzhu1,Shi Xiaoyan,Yang Fuming1,Dong Yongjun,Wu Zhe,Dai Rui,Liu HuaORCID,Li Sixuan

Affiliation:

1. Changchun Institute of Optics

Abstract

The detection technology of infrared polarization has gained significant attention due to its ability to provide better identification and obtain more information about the target. In this paper, based on the expression of the full polarization state in Stokes space, we designed micro-nano metasurface functional arrays to calculate the polarization state of the incident light by reading the Stokes parameters (a set of parameters that describe the polarization state). Metalens with linear and circular polarization-dependent functions are designed based on the propagation and geometric phases of the dielectric Si meta-atoms in the infrared band, respectively. The device exhibits a high polarization extinction ratio. The influence of incident angle on polarization-dependent metalens is discussed, and the analysis of incident angle is of great significance for the practical application. An infrared six-foci metalens is proposed, each corresponding to the Poincaré sphere's coordinate component (a graphical polarization state method). By matching the six polarization components of the incident light and the Stokes parameters, the polarization detection function can be realized by calculating the polarization state of the incident light. There is a slight error between the theoretical value and the calculated value of the unit coordinate component of the Stokes parameters. At the same time, the intensity distribution of different incident light polarization azimuth angles and ellipticity angles on the focal plane agrees with the theory. The advantage of the device is that the polarization state of the incident light can be directly calculated without passing through other components. The six-foci metalens have potential applications in polarization detection and imaging, space remote sensing, etc.

Funder

Distinguished Young Scholars of Jilin Province

Scientific and Technological Development Project of Jilin Province

National Natural Science Foundation of China

Excellent Member of Youth Innovation Promotion Association of the Chinese Academy of Sciences

Leading Talents and Team Project of Scientific and Technological Innovation for Young and Middle-aged Groups in Jilin Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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