Sakib Shihabun, Hoque Ahasanul, Rahim Sharul Kamal Bin Abdul, Singh Mandeep, Sahar Norsuzlin Mohd, Islam Md Shabiul, Soliman Mohamed S, Islam Mohammad Tariqul
Institute of Climate Change, Universiti Kebangsaan Malaysia, Bangi 43600, Selangor, Malaysia.
Wireless Communication Centre, Universiti Teknologi Malaysia, Skudai 81310, Johor, Malaysia.
Materials (Basel). 2023 Jan 30;16(3):1172. doi: 10.3390/ma16031172.
This paper reports a central spiral split-rectangular-shaped metamaterial absorber surrounded by a polarization-insensitive ring resonator for s-band applications. The rated absorption is 99.9% at 3.1 GHz when using a three-layer structure where the top and ground are made of copper and the center dielectric material is a commonly used FR-4 substrate. The central split gaps have an impact on the unit cell by increasing high absorption, and an adequate electric field is apparent in the outer split ring gap. At 3.1 GHz, the permittivity and permeability are negative and positive, respectively, so the proposed unit cell acts as an epsilon negative (ENG) metamaterial absorber. In a further analysis, Roger4450B was used as a substrate and obtained excellent absorption rates of 99.382%, 99.383%, 99.91%, and 95.17% at 1.44, 3.96, 4.205, and 5.025 GHz, respectively, in the S- and C-band regions. This unit cell acts as a single negative metamaterial (SNG) absorber at all resonance frequencies. The S and S parameters for FR-4 and Rogers4450B were simulated while keeping the polarization angle (θ and φ) at 15, 30, 45, 60, 75, and 90 degrees to measure, permittivity, permeability, reflective index, absorption, and reflection. The values of the reflective index are near zero. Near-zero reflective indexes (NZRI) are widely used in antenna gain propagation. The unit cell fabricated for the FR-4 substrate attained 99.9% absorption. S-band values in the range of (2-4) GHz can be applied for low-frequency radar detection.
本文报道了一种用于S波段应用的中心螺旋分裂矩形超材料吸收器,其周围环绕着一个对偏振不敏感的环形谐振器。当使用三层结构时,在3.1GHz处的额定吸收率为99.9%,其中顶层和底层由铜制成,中心介电材料是常用的FR-4基板。中心分裂间隙通过增加高吸收率对单元胞产生影响,并且在外部分裂环间隙中出现足够的电场。在3.1GHz时,介电常数和磁导率分别为负和正,因此所提出的单元胞充当负介电常数(ENG)超材料吸收器。在进一步的分析中,使用Roger4450B作为基板,在S波段和C波段区域分别在1.44、3.96、4.205和5.025GHz处获得了99.382%、99.383%、99.91%和95.17%的优异吸收率。该单元胞在所有谐振频率下都充当单负超材料(SNG)吸收器。在保持偏振角(θ和φ)为15、30、45、60、75和90度的情况下,对FR-4和Rogers4450B的S和S参数进行了模拟,以测量介电常数、磁导率、反射率、吸收率和反射率。反射率值接近零。近零反射率(NZRI)广泛应用于天线增益传播。为FR-4基板制造的单元胞实现了99.9%的吸收率。(2-4)GHz范围内的S波段值可用于低频雷达探测。