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Wideband cloaking by using inhomogeneous nanostructured graphene metasurface for tunable cloaking in the terahertz regime

机译:通过使用不均匀的纳米结构石墨烯超表面进行宽带隐身,在太赫兹状态下进行隐身

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The ultrathin graphene metasurface is proposed and analyzed as a cloaking shell for cylindrical objects with the aim of wideband tunable scattering cancellation in terahertz (THz) spectrum. This mantle cloak is structured by periodic array of graphene nanopatches. In this paper, it is analytically shown that the metasurface reactance can be tuned from inductive to capacitive, as a function of the graphene's Fermi energy and dimensions of nanopatches, that provide the possibility of cloaking both dielectric and conductor cylinders. The appropriate Fermi energy and dimensions are obtained by optimization. To provide wideband invisibility, we use inhomogeneous graphene nanopatches, that we could significantly increase the 3-dB bandwidth approximately 8 times more than the homogeneous metasurface. These resultes have great interest for efficient invisibility, low noise THz sensing and communication systems and networks.
机译:提出并分析了超薄石墨烯超表面,并将其作为圆柱形物体的掩蔽壳进行了分析,目的是实现太赫兹(THz)频谱的宽带可调散射消除。该披风斗篷是由周期性排列的石墨烯纳米斑构成的。在本文中,分析表明,可以根据石墨烯的费米能和纳米斑的尺寸,将超表面电抗从感性调整为电容性,从而可以掩盖电介质和导体圆柱体。通过优化获得合适的费米能量和尺寸。为了提供宽带的不可见性,我们使用了不均匀的石墨烯纳米补丁,可以使3dB带宽显着增加,比均匀的超颖表面大约多8倍。这些结果对有效的隐形性,低噪声THz感测以及通信系统和网络具有极大的兴趣。

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