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A Novel 2-Bit Graphene Reconfigurable Reflectarray

机译:一种新型的2位石墨烯可重新配置反射阵列

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We present a novel 2-bit graphene-controlled reconfigurable antenna design for large-scale, millimeter-wave/terahertz reflective surfaces. Using previously characterized graphene sheet resistances, in the millimeter-wave bands, the proposed 2-bit configuration can be used for reconfigurable reflective surfaces, while reducing the quantization lobes compared to 1-bit designs with a small increase in the complexity and losses. As such, we place two, single-bit, graphene phase shifters on each differential node of a patch antenna, achieving lower insertion losses and 2-bit phase control on the reflected waves. Herein, we present the theoretical models of the proposed designs alongside full-wave simulations of a 275 GHz linear array.
机译:我们提出了一种用于大型毫米波/太赫兹反射表面的新型2比特石墨烯控制的可重新配置天线设计。在毫米波带中使用先前表征的石墨膜电阻,所提出的2位配置可用于可重新配置的反射表面,同时减小与1位设计相比的量化凸起,其复杂性和损失小。因此,我们在贴片天线的每个差分节点上放置两个,单位,石墨烯相移器,在反射波上实现较低的插入损耗和2位相位控制。这里,我们展示了所提出的设计的理论模型,以及275GHz线性阵列的全波模拟。

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