Zhang Ying, Gao Yanze, Yang Suhui, Li Zhuo, Wang Xin, Zhang Jinying
School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, China.
Beijing Key Laboratory for Precision Optoelectronic Measurement Instrument and Technology, Beijing 100081, China.
Micromachines (Basel). 2023 Nov 18;14(11):2119. doi: 10.3390/mi14112119.
Composite thin film absorbers show superior performance and have a wide range of applications. Obtaining a broadband composite thin film absorber is a challenge. In this work, we proposed a modeling of a broadband microwave composite thin film absorber based on the impedance matching theory and equivalent circuit model of the square loop. The unit cell of the absorber was composed of metal square loops with high magnetic conductivity deposited on the polyethylene substrate, and an FR-4 (epoxy glass cloth) substrate was the spacer substrate layer. The simulation results show that the absorptivity of the absorber reached more than 90% in the frequency range of 8.7-18 GHz for TE and TM waves under normal incidence. The thickness of the designed absorber was 2.05 mm (0.059 λ, λ corresponds to the maximum absorption wavelength). The simulation results show that the energy distribution in the proposed absorber was mainly localized in the top metal FSS layer due to the ohmic loss of metal, and the dielectric loss played a small role in the absorption of the absorber. Our work provides a design approach to improve the efficiency of optoelectronic devices and thermal detectors and has application prospects in radar and aircraft stealth applications.
复合薄膜吸收器表现出卓越的性能且具有广泛的应用。获得宽带复合薄膜吸收器是一项挑战。在这项工作中,我们基于阻抗匹配理论和方环等效电路模型提出了一种宽带微波复合薄膜吸收器的建模方法。吸收器的单元由沉积在聚乙烯基板上具有高磁导率的金属方环组成,并且FR - 4(环氧玻璃布)基板作为间隔基板层。仿真结果表明,在垂直入射下,对于TE波和TM波,该吸收器在8.7 - 18 GHz频率范围内的吸收率达到90%以上。所设计吸收器的厚度为2.05毫米(0.059λ,λ对应最大吸收波长)。仿真结果表明,由于金属的欧姆损耗,所提出的吸收器中的能量分布主要集中在顶部金属频率选择表面(FSS)层,并且介电损耗在吸收器的吸收中起的作用较小。我们的工作提供了一种提高光电器件和热探测器效率的设计方法,并且在雷达和飞机隐身应用中具有应用前景。