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Hyperbolic Metamaterials at Microwaves With Stacked Inductive Coiled-Wire Arrays

机译:具有堆叠感应线圈阵列的微波双曲超材料。

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Metasurfaces made of arrayed wires are inductive only for propagating waves and become capacitive when illuminated by evanescent waves. We show how to extend the inductive behavior of such metasurfaces for the case of illumination by plane waves with large wavenumber, i.e., for evanescent waves. The proposed metasurface exhibits an effective surface inductance that is extended to evanescent waves with large transverse wavenumber using coiled wires. Metasurfaces with inductive response over a wide spatial spectrum can be used for the realization of hyperbolic metamaterials (HMs) at microwave frequencies. Stacking such inductive metasurfaces separated by thin dielectric spacers leads to a negative real part of the in-plane, effective dielectric permittivity, and thus, to hyperbolic wavevector dispersion at microwave frequencies. We establish the requirements for such hyperbolic dispersion condition using arrays of coiled wires, also accounting for losses. We show that the negative in-plane real part of dielectric permittivity stretches up to transverse wavenumbers that are several times larger than the free-space wavenumber, over a broad frequency bandwidth. The theory and important design analytic formulas are presented to demonstrate the inductive behavior, as well as the propagative nature of waves in the proposed HM, in agreement with full-wave simulations.
机译:由阵列线制成的超表面仅在传播波时具有感应性,而在e逝波照射时变得具有电容性。我们展示了如何在具有大波数的平面波(即for逝波)照明的情况下扩展此类超表面的感应行为。所提出的超颖表面具有有效的表面电感,使用线圈绕线可将其扩展到横向波数大的e逝波。在宽的空间频谱上具有感应响应的超表面可以用于实现微波频率下的双曲线超材料(HMs)。堆叠由薄的电介质间隔物分隔的这种感应超表面会导致面内负实数部分有效的介电常数,从而导致微波频率下的双曲线波矢弥散。我们使用绕线阵列确定了此类双曲弥散条件的要求,并考虑了损耗。我们显示出,介电常数的负面内实部在宽的频率带宽上一直延伸到比自由空间波数大几倍的横向波数。提出了理论和重要的设计解析公式,以与全波仿真相一致地证明所提出的HM中的感应行为以及波的传播特性。

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