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Composites with mechanically tunable plasmon frequency

机译:具有机械可调等离子体频率的复合材料

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This paper summarizes our efforts to create a composite material with a mechanically tunable plasmon frequency at the microwave band. The permittivity of the composite changes sign at the plasmon frequency. Such composites, therefore, can be used as electromagnetic filters. Theoretically, an array of non-magnetic, metallic wire coils has been shown to have a plasmon behavior that is dependent on the wire thickness, coil inner diameter, pitch and coil spacing. Here, a material is made out of an array of coils placed within a non-metallic frame, and the material plasmon frequency is tuned through altering the pitch. The coils are arranged with alternating handedness to create an effective, non-chiral medium. A transmit/receive setup is used to characterize the electromagnetic behavior of the composite. The setup consists of a vector network analyzer and two horn antennas, which are used to measure the scattering parameters of the material. These parameters are then used to calculate the permittivity. The results show an increase in the plasmon frequency with increase in the pitch. Increasing the pitch 30%, from 3 to 3.9mm, results in a corresponding increase from 6.3 to 7.5GHz in the frequency.
机译:本文总结了我们的努力,以创建一种在微波频段具有可机械调整的等离激元频率的复合材料。复合物的介电常数在等离激元频率上改变符号。因此,这种复合材料可用作电磁过滤器。从理论上讲,非磁性金属丝线圈阵列已显示出具有等离激元特性,该等离激元特性取决于导线的厚度,线圈的内径,节距和线圈的间距。在这里,材料是由放置在非金属框架内的线圈阵列制成的,并且通过改变螺距来调整材料等离子体频率。线圈以交替的手性排列以创建有效的非手性介质。发射/接收设置用于表征复合材料的电磁性能。该设置包括一个矢量网络分析仪和两个喇叭天线,用于测量材料的散射参数。然后将这些参数用于计算介电常数。结果表明,随着间距的增加,等离子体激元频率也增加。将节距从3mm增加到3.9mm,增加30%,会使频率从6.3GHz相应增加到7.5GHz。

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