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Microwave Jerusalem cross absorber by metamaterial split ring resonator load to obtain polarization independence with triple band application

机译:微波耶路撒冷交叉吸收器通过超材料分流环谐振器负载,获得与三频段应用的极化独立性

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Microwave Jerusalem cross (JC) absorbers are interesting for different researches such as medical imaging. The split ring resonators (SRRs) are suggested as the conventional metamaterial elements which are noticed in this paper. Loads are used for JC absorber for achieving dual and triple band characteristic at X-band and Ku-band application. We show that the JC absorber has a single resonance and the final model has triple resonance 8.6, 10.2, 11.95 GHz with absorption more than 84%. The results show that how the parasitic element can provide new capacitance and inductance to make new resonance and the current distribution revealed the new capacitance in the structures. The symmetrical arrangement of the absorber made polarization independence and also by loads. We have tried to save this quality and current distribution revealed that how the elements affected the current dispense on the metal particle and gaps. The prototype absorber is fabricated on FR-4 and simulation results are compared and confirmed with experimental. (C) 2019 Elsevier GmbH. All rights reserved.
机译:微波耶路撒冷(JC)吸收器对医学成像等不同研究有趣。分流环谐振器(SRRS)被建议为本文注意到的传统超材料元素。负载用于JC吸收器,用于在X波段和KU波段应用中实现双带特性。我们表明JC吸收器具有单一的共振,最终模型具有三重共振8.6,10.2,11.95GHz,吸收超过84%。结果表明,寄生元件如何提供新的电容和电感以使新的共振,电流分布显示结构中的新电容。吸收器的对称布置使得极化独立性和负载也是如此。我们试图节省这种质量,目前的分布透露,该元件如何影响金属粒子和间隙上的当前分配。原型吸收剂在FR-4上制造,并使用实验进行比较和确认模拟结果。 (c)2019年Elsevier GmbH。版权所有。

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