首页> 外文期刊>Journal of nanomaterials >Electromagnetic Field Behavior in Dispersive Isotropic Negative Phase Velocity/Negative Refractive Index Guided Wave Structures Compatible with Millimeter-Wave Monolithic Integrated Circuits
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Electromagnetic Field Behavior in Dispersive Isotropic Negative Phase Velocity/Negative Refractive Index Guided Wave Structures Compatible with Millimeter-Wave Monolithic Integrated Circuits

机译:与毫米波单片集成电路兼容的分散各向同性负相速度/负折射率导波结构中的电磁场行为

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A microstrip configuration has been loaded with a dispersive isotropic left-handed medium (LHM) substrate and studied regarding its high frequency millimeter-wave behavior near 100 GHz. This has been accomplished using a full-wave integral-equation anisotropic Green's function code configured to run for isotropy. Never before seen electromagnetic field distributions are produced, unlike anything found in normal media devices, using this ab initio solver. These distributions are made in the cross-sectional dimension, with the field propagating in the perpendicular direction. It is discovered that the LHM distributions are so radically different from ordinary media used as a substrate that completely new electronic devices based upon the new physics become a real possibility. The distinctive dispersion diagram for the dispersive medium, consisting of unit cells with split ring resonator-rod combinations, is provided over the upper millimeter-wave frequency regime.
机译:微带配置已加载了分散的各向同性左手介质(LHM)基板,并对其在100 GHz附近的高频毫米波行为进行了研究。这是通过配置用于各向同性的全波积分方程各向异性格林函数代码完成的。使用此从头算算器,与普通媒体设备中发现的电磁场分布不同,从未产生过可见的电磁场分布。这些分布是在横截面尺寸上进行的,其中场沿垂直方向传播。人们发现,LHM分布与用作基材的普通介质有很大不同,以至于基于新物理的全新电子设备成为了现实。在上毫米波频率范围内提供了分散介质的独特分散图,该分散介质由具有裂环谐振器-杆组合的单位单元组成。

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