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Dual capacitive-inductive nature of periodic graphene patches: Transmission characteristics at low-terahertz frequencies

机译:周期性石墨烯贴片的双重电容感应特性:低太赫兹频率下的传输特性

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摘要

We report on the dual nature (capacitive and inductive) of the surface impedance of periodic graphene patches at low-terahertz frequencies. The transmission spectra of a graphene-dielectric stack shows that patterned graphene exhibits both the low-frequency (capacitive) passband of metal patch arrays and the higher-frequency (inductive) passband of metal aperture arrays in a single tunable configuration. The analysis is carried out using a transfer-matrix approach with two-sided impedance boundary conditions, and the results are verified using full-wave numerical simulations. In addition, the Bloch-wave analysis of the corresponding infinite periodic structure is presented in order to explain the passband and stopband characteristics of the finite graphene-dielectric stack.
机译:我们报告了在低太赫兹频率下周期性石墨烯贴片的表面阻抗的双重性质(电容性和电感性)。石墨烯-电介质叠层的透射光谱表明,图案化的石墨烯在单个可调配置中既显示金属贴片阵列的低频(电容性)通带,又显示金属孔径阵列的高频(感性)通带。使用传递矩阵方法对两侧的阻抗边界条件进行分析,并使用全波数值模拟验证了结果。此外,提出了相应无限周期结构的布洛赫波分析,以解释有限石墨烯-电介质堆叠的通带和阻带特性。

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