Progress in Water-Based Metamaterial Absorber: A Review
Jingda Wen, Qiang Ren, Ruiguang Peng, Haoyang Yao, Yuchang Qing, Jianbo Yin, Qian Zhao
Abstract
Open-access reader
Jingda Wen, Qiang Ren, Ruiguang Peng, Haoyang Yao, Yuchang Qing, Jianbo Yin, Qian Zhao
Abstract
Open-access reader
Increasing attention on microwave ultra-broadband metamaterial absorbers has been paid due to their promising applications. While most microwave ultra-broadband metamaterial absorbers developed so far are based on metallic resonant structures, dispersive dielectric water-based metamaterial opens a simpler and more versatile route for the construction of polarization- and angle- insensitive ultra-broadband absorption. Here, we review the recent progresses of water-based metamaterial absorber by providing an illustration of the mechanisms to realize ultra-broadband, tunable and multi-functional absorption. We also address the further development direction and some potential novel applications.
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Increasing attention on microwave ultra-broadband metamaterial absorbers has been paid due to their promising applications. While most microwave ultra-broadband metamaterial absorbers developed so far are based on metallic resonant structures, dispersive dielectric water-based metamaterial opens a simpler and more versatile route for the construction of polarization- and angle- insensitive ultra-broadband absorption. Here, we review the recent progresses of water-based metamaterial absorber by providing an illustration of the mechanisms to realize ultra-broadband, tunable and multi-functional absorption. We also address the further development direction and some potential novel applications.
Key concepts: Metamaterial, Broadband, Metamaterial absorber, Microwave, Materials science, Optoelectronics, Tunable metamaterials, Dielectric