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Achieving low-emissivity materials with high transmission for broadband radio-frequency signals

机译:为宽带射频信号实现高传输率的低发射率材料

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摘要

The use of low-emissivity (low-e) materials in modern buildings is an extremely efficient way to save energy. However, such materials are coated by metallic films, which can strongly block radio-frequency signals and prevent indoor-outdoor wireless communication. Here, we demonstrate that, when specially-designed metallic metasurfaces are covered on them, the low-e materials can remain low emissivity for thermal radiation and allow very high transmission for a broad band of radio-frequency signals. It is found that the application of air-connected metasurfaces with subwavelength periods is critical to the observed high transmission. Such effects disappear if periods are comparable to wavelengths or metal-connected structures are utilized. The conclusion is supported by both simulations and experiments. Advantages such as easy to process, low cost, large-area fabrication and design versatility of the metasurface make it a promising candidate to solve the indoor outdoor communication problem.
机译:在现代建筑中使用低辐射率(low-e)材料是节省能源的极其有效的方法。但是,此类材料涂有金属膜,可以强烈阻挡射频信号并阻止室内外无线通信。在这里,我们证明,当在其上覆盖专门设计的金属超颖表面时,低辐射材料可以保持较低的热辐射发射率,并允许在宽频带的射频信号中实现很高的传输。发现具有亚波长周期的空气连接的超表面的应用对于观察到的高透射率至关重要。如果周期与波长相当或使用金属连接的结构,则这种效果会消失。仿真和实验均支持该结论。超表面的易于加工,低成本,大面积制造和设计通用性等优点使其成为解决室内室外通信问题的有希望的候选者。

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