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Graphene based tunable fractal Hilbert curve array broadband radar absorbing screen for radar cross section reduction

机译:基于石墨烯的可调谐分形希尔伯特曲线阵列宽带雷达吸收屏,用于减小雷达截面

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This paper proposes a new type of graphene based tunable radar absorbing screen. The absorbing screen consists of Hilbert curve metal strip array and chemical vapour deposition (CVD) graphene sheet. The graphene based screen is not only tunable when the chemical potential of the graphene changes, but also has broadband effective absorption. The absorption bandwidth is from 8.9GHz to 18.1GHz, ie., relative bandwidth of more than 68%, at chemical potential of 0eV, which is significantly wider than that if the graphene sheet had not been employed. As the chemical potential varies from 0 to 0.4eV, the central frequency of the screen can be tuned from 13.5GHz to 19.0GHz. In the proposed structure, Hilbert curve metal strip array was designed to provide multiple narrow band resonances, whereas the graphene sheet directly underneath the metal strip array provides tunability and averagely required surface resistance so to significantly extend the screen operation bandwidth by providing broadband impedance matching and absorption. In addition, the thickness of the screen has been optimized to achieve nearly the minimum thickness limitation for a nonmagnetic absorber. The working principle of this absorbing screen is studied in details, and performance under various incident angles is presented. This work extends applications of graphene into tunable microwave radar cross section (RCS) reduction applications.
机译:本文提出了一种新型的基于石墨烯的可调谐雷达吸收屏。吸收屏由希尔伯特曲线金属带阵列和化学气相沉积(CVD)石墨烯片组成。基于石墨烯的屏幕不仅可以在石墨烯的化学势发生变化时进行调节,而且具有宽带有效吸收能力。在0eV的化学势下,吸收带宽为8.9GHz至18.1GHz,即相对带宽大于68%,这比未使用石墨烯片的情况要宽得多。当化学势在0到0.4eV之间变化时,屏幕的中心频率可以从13.5GHz调整到19.0GHz。在提出的结构中,希尔伯特曲线金属带阵列设计为可提供多个窄带共振,而金属带阵列正下方的石墨烯片可提供可调性和平均所需的表面电阻,从而通过提供宽带阻抗匹配和显着扩展屏幕操作带宽。吸收。此外,屏幕的厚度已经过优化,几乎达到了非磁性吸收体的最小厚度限制。详细研究了这种吸收屏的工作原理,并给出了在各种入射角下的性能。这项工作将石墨烯的应用扩展到可调微波雷达横截面(RCS)减少应用中。

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