Long‐Infrared Broadband Polarization‐Sensitive Absorber with Metasurface Based on Ladder Network

Author:

Yu Haihong12,Liang Zhongzhu13ORCID,Shi Xiaoyan13,Yang Fuming13,Xu Haiyang1,Wu Zhe1,Dai Rui1,Smith David R.4,Liu Yichun1

Affiliation:

1. Center for Advanced Optoelectronic Functional Materials Research and Key Laboratory of UV Light‐Emitting Materials and Technology of Ministry of Education College of Physics Northeast Normal University Changchun 130024 China

2. College of Physics Changchun University of Science and Technology Changchun 130012 China

3. State Key Laboratory of Applied Optics Changchun Institute of Optics Fine Mechanics and Physics Chinese Academy of Sciences Changchun Jilin 130033 China

4. Center for Metamaterials and Integrated Plasmonics Duke University P.O. Box 90291 Durham North Carolina 27708 USA

Abstract

AbstractPlasmonic resonant and metamaterial structures allow for manipulating the polarization properties of electromagnetic waves to achieve polarization beam splitting. Broadband polarization‐sensitive metamaterial absorbers based on surface plasmon polaritons have the advantages of high‐energy utilization and excellent stability, which may replace traditional polarizing devices. Here, an absorber based on a ladder network construction is designed theoretically and investigated experimentally. The absorber can possess almost 92% average absorptivity for TM polarization light in 8–12 µm range (experimental result: 83% from 7 to 11 µm). It is especially sensitive to the polarization angle of incident light, and with the increase of polarization angle, the broadband absorption response can present analogously monotonous reduction. The theoretical and experimental results for TE polarization light are 12% and 25%, respectively. The broadband absorption response performs angle insensitive property under oblique incidence. The proposed metamaterial absorber opens a path to realize broadband polarization‐sensitive absorption based on simple nanostructure. It will possess great potential applications in high‐performance polarimetric photodetectors and imaging fields.

Funder

Natural Science Foundation of Jilin Province

National Natural Science Foundation of China

Publisher

Wiley

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