Hakim Mohammad Lutful, Alam Touhidul, Islam Md Shabiul, Salaheldeen M M, Almalki Sami H A, Baharuddin Mohd Hafiz, Alsaif Haitham, Islam Mohammad Tariqul
Pusat Sains Ankasa (ANGKASA), Institut Perubahan Iklim, Universiti Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.
Department of CSE, International Islamic University Chittagong (IIUC), Kumira, Chattogram 4318, Bangladesh.
Materials (Basel). 2022 Mar 16;15(6):2201. doi: 10.3390/ma15062201.
Metamaterial absorbers are very attractive due to their significant absorption behavior at optical wavelengths, which can be implemented for energy harvesting, plasmonic sensors, imaging, optical modulators, photovoltaic detectors, etc. This paper presents a numerical study of an ultra-wide-band double square ring (DSR) metamaterial absorber (MMA) for the complete visible optical wavelength region, which is designed with a three-layer (tungsten-silicon dioxide-tungsten) substrate material. Due to the symmetricity, a polarization-insensitive absorption is obtained for both transverse electric (TE) and transverse magnetic (TM) modes by simulation. An absorption above 92.2% and an average absorption of 97% are achieved in the visible optical wavelength region. A peak absorption of 99.99% is achieved at 521.83 nm. A wide range of oblique incident angle stabilities is found for stable absorption properties. A similar absorption is found for different banding angles, which may occur due to external forces during the installation of the absorber. The absorption is calculated by the interference theory (IT) model, and the polarization conversion ratio (PCR) is also validated to verify the perfect MMA. The electric field and magnetic field of the structure analysis are performed to understand the absorption property of the MMA. The presented MMA may be used in various applications such as solar cells, light detection, the biomedical field, sensors, and imaging.
超材料吸收器因其在光波长下的显著吸收特性而极具吸引力,可用于能量收集、等离子体传感器、成像、光调制器、光伏探测器等领域。本文对一种用于整个可见光波长区域的超宽带双方环(DSR)超材料吸收器(MMA)进行了数值研究,该吸收器采用三层(钨-二氧化硅-钨)衬底材料设计。由于其对称性,通过模拟获得了对横向电(TE)和横向磁(TM)模式均不敏感的偏振吸收。在可见光波长区域实现了92.2%以上的吸收率和97%的平均吸收率。在521.83nm处实现了99.99%的峰值吸收率。发现了宽范围的斜入射角稳定性,以实现稳定的吸收特性。对于不同的带角度发现了类似的吸收,这可能是由于吸收器安装过程中的外力作用所致。吸收率通过干涉理论(IT)模型计算,并且还验证了偏振转换率(PCR)以验证完美的MMA。进行了结构分析的电场和磁场研究,以了解MMA的吸收特性。所提出的MMA可用于各种应用,如太阳能电池、光检测、生物医学领域、传感器和成像。