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A reconfigurable high Q epsilon near zero tunnel for material characterization

机译:零隧道附近的可重构的高Q epsilon进行材料表征

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摘要

A new type of reconfigurable sensing cavity is designed for measurement of complex dielectric permittivity of materials. This circuit is based on an Epsilon Near Zero (ENZ) tunnel integrated on a substrate, and it uses liquid metal switches to reconfigure two tunneling frequencies (2.4 GHz, and 3.5 GHz). As opposed to conventional narrow channel ENZ structures, our tunnel offers high unloaded quality factor by increasing its volume and controlling its external coupling. Using the cavity perturbation technique, the permittivities of 5 different liquids were measured giving very close results to those reported in the literature.
机译:一种新型的可重构感测腔设计用于测量材料的复杂介电常数。该电路基于整体在基板上的零(ENZ)隧道附近的ePsilon,它使用液态金属开关来重新配置两个隧道频率(2.4GHz和3.5GHz)。与传统的窄通道enz结构相反,我们的隧道通过增加其体积并控制其外部耦合来提供高卸载质量因子。使用腔扰动技术,测量5种不同液体的介质性,从文献中报道的那些,测量非常接近的结果。

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