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Vanadium Dioxide for Reconfigurable Antennas and Microwave Devices: Enabling RF Reconfigurability Through Smart Materials

机译:可重新配置天线和微波设备的钒二氧化氧化物:通过智能材料实现RF重新配置性

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摘要

We present a comprehensive study of a new method to reconfigure, tune, and/or program antennas and radio-frequency (RF) devices. The method consists of using electrical signals to induce the solid-tosolid phase transition in vanadium dioxide (VO2) thin-film patterned structures that connect the device metallization layer with extensions, thus effectively changing the geometry of the device. Applied voltage pulses to a resistive heater electrically isolated from the antenna metallization layers increase the temperature of the VO2 strip across the phase transition. Hence, the VO2-biasing mechanism and the antenna are electrically decoupled, which enables an additional degree of freedom for antenna and microwave device engineers as the reconfiguration is no longer restricted by any biasing network limitations. Radiation patterns are also maintained unaffected. This decoupling adds into the design spectrum, applications that require wideband tuning, low-loss structures (e.g., arrays and reflectarrays), and even reconfigurable cloaks. The VO2 switch is arguably the smallest ever used to reconfigure an antenna, which requires further circuit element considerations. The presented method is validated through a series of antenna prototypes that demonstrate VO2 applicability on wire and aperture antennas. Details and challenges of the monolithic integration of VO2 thin films and resistive heaters for reconfigurable antennas, along with the measurement setup, are presented. Results unveil this new reconfiguration technique and suggest further applications, as the VO2 may also be activated optically.
机译:我们对重新配置,调谐和/或编程天线和射频(RF)设备的新方法进行了全面的研究。该方法包括使用电信号诱导在二氧化钒(VO2)薄膜图案结构中的固色调相转变,该结构将器件金属化层与延伸部连接,从而有效地改变装置的几何形状。施加电压脉冲从天线金属化层电隔离的电阻加热器增加了相位过渡的VO2条带的温度。因此,VO2偏置机构和天线电隔离,这使得天线和微波设备工程师的额外自由度是因为重新配置不再被任何偏置网络限制限制。辐射模式也保持不受影响。该去耦进入了设计频谱,需要宽带调谐,低损耗结构(例如,阵列和反射阵列)的应用,甚至可重新配置的斗篷。 VO2开关可以说是曾经用于重新配置天线的最小值,这需要进一步的电路元件考虑。通过一系列天线原型验证所提出的方法,该原型在线和孔径天线上演示了VO2适用性。展示了VO2薄膜和电阻加热器的细节和挑战,以及可重新配置天线以及测量设置。结果揭示了这种新的重新配置技术,并提出了进一步的应用,因为VO2也可以光学激活。

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