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Electromagnetic simulations of polarization-insensitive and wide-angle multiband metamaterial absorber by incorporating double asterisk resonator

机译:双星形谐振器结合双星形谐振器极化不敏感和广角多频带超材料吸收器的电磁仿真

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A novel multiband metamaterial absorber (MTMA) is proposed which is capable of well presenting a polarization-insensitive and wide incident angle stability in the microwave frequency range. The proposed MTMA comprisingtwo vertically stacked asterisk-based copper resonators separated by dielectric layer of flame retardant type four and backed with a thin copper film. High-frequency structure simulator was used to simulate the absorber and to depict surface current distribution. The results showed that the absorber is operated at three narrow bands with high absorptivity of about 92, 100 and 100% at frequencies of 2.75, 4.3 and 9.5 GHz, respectively. The position of the resonant peaks can be effectively tuned by adjusting the geometry parameters of the structure, thereby achieving a multiband, polarization-independent andwide-angle absorber. The designed structure is important for the application of sensors, thermal images and in constructing broad multiband signals for electromagnetic compatibility/interference.
机译:提出了一种新型多频带超材料吸收器(MTMA),其能够良好地在微波频率范围内呈现极化不敏感和宽的入射角稳定性。所提出的MTMA包括由阻燃型四晶体层分离的垂直堆叠的基于铜谐振器,并用薄的铜膜备用。高频结构模拟器用于模拟吸收器并描绘表面电流分布。结果表明,吸收器在3.75,4.3和9.5GHz的频率下,在具有约92,100和100%的高吸收率的窄带中操作。通过调节结构的几何参数,可以有效地调整谐振峰的位置,从而实现多频带,偏振无宽的宽度角度吸收器。设计的结构对于应用传感器,热图像以及构建广泛的多频带信号对于电磁兼容性/干扰来说很重要。

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