Zhao Yulin, Fu Jiahui, Zhang Qunhao, Feng Hao, Wei Wei, Chen Wan, Zhang Kuang, Wu Qun
Opt Lett. 2024 Jun 1;49(11):2942-2945. doi: 10.1364/OL.524371.
In this Letter, an optically transparent and broadband absorber designed using a multi-objective genetic algorithm (MOGA) is proposed. The absorption of the multilayer lossy frequency selective surface-based absorber is calculated by multilayer absorption equations and equivalent circuit models. To solve the problem of the unbalanced structure absorption bandwidth and thickness, an algorithm is used for optimizing the geometric and sheet resistance parameters of the structure. A multilayer and optically transparent absorber with 90% absorption bandwidth covering a frequency range of 2-18 GHz (S-band to Ku-band) is developed based on the MOGA design method with optical transmittance of 60%. Its total thickness consists of a wavelength of only 0.095, and it has high oblique incidence stability, which makes it useful in the stealth technology and transparent electromagnetic shielding applications.
在本信函中,提出了一种使用多目标遗传算法(MOGA)设计的光学透明宽带吸收器。基于多层有损频率选择表面的吸收器的吸收通过多层吸收方程和等效电路模型进行计算。为了解决结构吸收带宽和厚度不平衡的问题,采用一种算法来优化结构的几何参数和薄层电阻参数。基于MOGA设计方法开发了一种多层光学透明吸收器,其在2 - 18 GHz(S波段至Ku波段)频率范围内具有90%的吸收带宽,光学透过率为60%。其总厚度仅为0.095个波长,并且具有高斜入射稳定性,这使其在隐身技术和透明电磁屏蔽应用中具有实用性。