首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Three-dimensional gravity tailored ultra-broadband absorber based on a high-impedance surface
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Three-dimensional gravity tailored ultra-broadband absorber based on a high-impedance surface

机译:基于高阻抗表面的三维重力量身定制超宽带吸收器

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In this paper, we present a novel, to the best of our knowledge, 3D ultra-broadband tunable metamaterial absorber (TMA), which is innovatively tuned by the gravity field with changing the position of the liquid metal (eutectic gallium-indium) in theory. The given TMA consists of a 3D glass cavity filled with the liquid metal, two-layer high-impedance surfaces, two dielectric layers, and a metallic plate on the bottom. The ultra-broadband absorption is achieved by the high-impedance surface and the liquid metal. Furthermore, it is noted that the liquid metal is poured into the different parts of the glass cavities via rotation under the action of the gravity field to obtain the tunable absorption. When such a TMA is not rotated, for the TE wave, the absorption rate exceeds 90% from 1.8 to 57.5 GHz with a wide relative absorption bandwidth (AB) of 187.8%. However, for the TM wave, the absorptivity goes beyond 90% at 5.6-56.4 GHz. The proposed TMA exhibits ultra-broadband absorption in the frequency regime of 1.6-45.3 GHz (the absorption rate is higher than 90%) with such a TMA rotated 180 degrees in the x- y plane, while the absorption rate is near zero from 1.6 to 60 GHz when the proposed Thais rotated 180 degrees in the y- z plane. Moreover, the surface current distributions, the near-field amplitude vertical bar E-z vertical bar, the phase phi(z), and the magnetic field distributions are investigated to describe the operating mechanism of the designed TMA. Besides, the numerical results indicate that such a TMA can realize high absorption under a wider incident angle. Compared with traditional tunable devices, the gravity field regulation, which can change the operating frequencies of an absorber in a noncontact way, has the advantages of easy implementation and resource savings. The proposed absorber tuned by the gravity will have potential applications in frequency selection. With the change of liquid metal and structure design, this design can also be potentially applied in other microwave and terahertz devices. Taken together, this study suggests a role for such an absorber in promoting a novel application for tunable devices. (C) 2021 Optical Society of America
机译:在本文中,我们提出了一种新的,据我们所知,三维超宽带可调谐超材料吸收器(TMA),它创新性地通过改变液态金属(共晶镓铟)在理论上的位置,通过重力场进行调谐。给定的TMA由一个充满液态金属的3D玻璃腔、两层高阻抗表面、两层电介质层和底部的金属板组成。超宽带吸收由高阻抗表面和液态金属实现。此外,值得注意的是,液态金属在重力场的作用下通过旋转注入玻璃腔的不同部分,以获得可调谐吸收。当这样的TMA不旋转时,对于TE波,吸收率在1.8到57.5GHz之间超过90%,宽的相对吸收带宽(AB)为187.8%。然而,对于TM波,在5.6-56.4 GHz时,吸收率超过90%。提出的TMA在1.6-45.3 GHz的频率范围内表现出超宽带吸收(吸收率高于90%),TMA在x-y平面上旋转180度,而当提出的TMA在y-z平面上旋转180度时,吸收率在1.6到60 GHz之间接近于零。此外,还研究了表面电流分布、近场振幅垂直条E-z垂直条、相位φ(z)和磁场分布来描述所设计TMA的工作机理。此外,数值结果表明,这种TMA可以在更宽的入射角下实现高吸收。与传统的可调谐器件相比,重力场调节可以非接触地改变吸收器的工作频率,具有易于实现和节省资源的优点。这种由重力调谐的吸收材料在频率选择方面有潜在的应用。随着液态金属和结构设计的变化,这种设计也有可能应用于其他微波和太赫兹器件。综上所述,这项研究表明,这种吸收体在促进可调谐器件的新应用方面发挥了作用。(2021)美国光学学会

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