Chinese Journal of Lasers, Volume. 51, Issue 2, 0213003(2024)
Ultra-wideband UV Absorber Based on Rhodium Metal and Silica Materials
The principal method currently employed by researchers to prevent damage to the human body and materials from ultraviolet (UV) radiation involves chemical protection strategies. With the development of metamaterials and nanotechnology, physical methods have been developed for protection against ultraviolet radiation. UV absorbers based on artificial microstructures can be used to absorb UV radiation and exhibit important applications in UV detection, sensing, and protection. Owing to limitations in materials and manufacturing processes, research on UV absorbers is relatively slow. Therefore, improved surface plasma materials and processes are sought to improve the absorption of UV absorbers. Metallic rhodium (Rh) is an excellent surface plasmon material. Compared with other noble metals, the surface of Rh can excite surface plasmon polaritons (SPPs) and exhibits a strong surface plasmon response in the UV band. Rh exhibits excellent stability in various environments. In this study, a UV absorber is designed using Rh metal and dioxide (SiO2) material to absorb ultraviolet radiation.
The unit structure of the UV absorber designed in this study consists of a Rh substrate, SiO2 dielectric layer, and Rh pattern layer. The finite element method (FEM) is used to analyze the dependence of the absorption characteristics of the absorber on the incident wavelength, incidence angle, azimuth angle, and geometrical structure parameters. Using the Comsol Multiphysics 5.4 software for modeling, the incident/reflection ports are set above the unit structure, the transmission ports are set below the unit structure, and the periodic boundary conditions are set in the horizontal direction of the unit structure. The field distribution is obtained by simulating the interaction between the incident ultraviolet radiation and absorber. The absorptivity and relative impedance are obtained from the reflection and transmission coefficients, respectively.
the unit period
In this study, an ultraviolet ultra-broadband absorber based on Rh metal and SiO2 dielectric materials is designed. The cell structure comprises a Rh metal substrate, SiO2 dielectric plate, and Rh metal pattern layer. The finite element method analysis results show that the UV absorber realizes absorption via the surface plasmon resonance effect. The absorption characteristics of the absorber can be adjusted by varying the individual parameters of the cell structure. Owing to the rotational symmetry of the structure, the absorber is polarization insensitive. With the optimized structural parameters corresponding to
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Haotian Fan, Wenrui Xue, Yuting Chen, Fanyi Meng, Changyong Li. Ultra-wideband UV Absorber Based on Rhodium Metal and Silica Materials[J]. Chinese Journal of Lasers, 2024, 51(2): 0213003
Category: micro and nano optics
Received: May. 18, 2023
Accepted: Jun. 13, 2023
Published Online: Jan. 4, 2024
The Author Email: Xue Wenrui (wrxue@sxu.edu.cn)
CSTR:32183.14.CJL230846