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Metamaterial-inspired absorbers for Terahertz packaging applications

机译:太赫兹包装应用中受超材料启发的吸收器

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In this paper, thin metamaterial-inspired structures are investigated for wide-band absorption of stray signals for THz packages. The absorber itself consists of a low-index, low-loss dielectric sandwiched between a patterned, two-dimensionally periodic, thin metallic layer, and a metal backing. Numerical simulations were performed using both the finite element (FEM) and finite-difference time domain (FDTD) numerical methods. Design, fabrication and tests were carried out for absorbers having center frequencies of 0.2 THz and 0.4 THz. Ultra-wide bandwidth and strong absorption were obtained by taking advantage of skin-effect losses in metamaterial structures, and through multi-stacking of these structures. Absorbers having high absorption coefficients and bandwidth (> 1THz) can easily be fabricated using the approach demonstrated in this paper. Two measurement approaches are applied to characterize these structures, details of which are presented in this paper.
机译:在本文中,研究了超材料启发的薄结构对太赫兹封装杂散信号的宽带吸收。吸收器本身由夹在带图案的二维周期性薄金属层和金属背衬之间的低折射率,低损耗电介质组成。使用有限元(FEM)和时域有限差分(FDTD)数值方法进行了数值模拟。对中心频率为0.2 THz和0.4 THz的吸收器进行了设计,制造和测试。通过利用超材料结构中的趋肤效应损耗并通过这些结构的多层堆叠,可以获得超宽带宽和强吸收性。具有高吸收系数和带宽(> 1THz)的吸收器可以使用本文演示的方法轻松制造。应用了两种测量方法来表征这些结构,本文将介绍其详细信息。

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