Moniruzzaman Md, Larguech Samia, Mobarak Mahjabin, Jizat Noorlindawaty Md, Alharbi Sultan S, Islam Mohammad Tariqul, Samsuzzaman Md, Al-Bawri Samir Salem
Department of Electrical and Electronic Engineering, College of Engineering and Technology, International University of Business Agriculture and Technology, Uttara, Dhaka, 1230, Bangladesh.
Department of Electrical Engineering, College of Engineering, Princess Nourah Bint Abdulrahman University, P.O. Box 84428, 11671, Riyadh, Saudi Arabia.
Sci Rep. 2025 Apr 10;15(1):12292. doi: 10.1038/s41598-025-96507-4.
In this paper, a new metamaterial absorber (MMA) has been presented that shows dual-band absorption at 1.8 GHz and 3.5 GHz. The MMA cell has been designed on an FR4 substrate with the electrical dimension of 0.14λ × 0.14λ × 0.01λ, calculating wavelength, λ at 1.8 GHz. Maximum absorption of 98.7% and 99.7% are attained by a unique design of a resonating patch consisting of two modified circular rings that are finalized through numerical Simulation in CST microwave studio. The MMA exhibits high angular stability up to 60° for incident angle as well as polarization angle variations. The analogous equivalent circuit is modeled in advanced design system (ADS) software, providing the same reflection, transmission, and absorption characteristics of 3D Simulation in CST. The absorption mechanism is investigated through current and electromagnetic field analysis. The MMA exhibits negative permittivity within 1 GHz-1.8 GHz and 2.08 GHz - 3.49 GHz and negative permeability with other frequency ranges. The prototype of a 3 × 6 array of the MMA cell is developed, and measurement is accomplished. The measured result exhibits well match with the simulated result. Moreover, The MMA displays good shielding effectiveness of 40.12 dB and 36.81 dB at 1.8 GHz and 3.5 GHz, respectively. The quality factors of the MMA are 30 and 22.3, with half power bandwidth of 60 MHz and 157 MHz. This new and unique MMA can be incorporated with various electronic devices for microwave shielding from GSM 1.8 GHz and sub-6, 5G 3.5 GHz signals.
本文提出了一种新型超材料吸波器(MMA),其在1.8 GHz和3.5 GHz处呈现双频吸收特性。该MMA单元设计在FR4基板上,其电尺寸为0.14λ×0.14λ×0.01λ(1.8 GHz时计算波长λ)。通过由两个修改后的圆环组成的谐振贴片的独特设计,在CST微波工作室中进行数值模拟最终实现了98.7%和99.7%的最大吸收率。该MMA在入射角以及极化角变化高达60°时表现出高角度稳定性。在高级设计系统(ADS)软件中对类似的等效电路进行建模,其提供与CST中的三维模拟相同的反射、传输和吸收特性。通过电流和电磁场分析研究吸收机制。该MMA在1 GHz - 1.8 GHz和2.08 GHz - 3.49 GHz范围内呈现负介电常数,在其他频率范围内呈现负磁导率。开发了一个3×6阵列的MMA单元原型并完成了测量。测量结果与模拟结果吻合良好。此外,该MMA在1.8 GHz和3.5 GHz时分别显示出40.12 dB和36.81 dB的良好屏蔽效能。该MMA的品质因数分别为30和22.