An ultra-wideband linear-to-circular polarization converter based on multiphysics regulation

Li Zeng, Guo‐Biao Liu, Tong Huang, Hai Feng Zhang
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引用次数: 1

Abstract

In this paper, an ultrawideband linear-to-circular polarization converter(LCPC) based on multiphysics regulation is proposed and studied by combining solid state plasma and vanadium dioxide. The proposed LCPC will exhibit three states which are regulated by the way of electric control and temperature (T) control. The simulation results show that the 3 dB AR band is 14.3-29.7 GHz (the relative bandwidth is 70%) when all the solid state plasma regions are not excited and T<68 °C. The 3 dB AR band will be changed into 14.4-23.4 GHz and 28.6-35.9 GHz(the relative bandwidths are 47.61% and 22.64%) when all the solid state plasma regions are excited and T<68 °C. When all the solid state plasma regions are not excited and T≥68 °C, the 3 dB AR band will become to 8.4-11.2 GHz and 18.7-29.5 GHz (the relative bandwidths are 28.57% and 44.81%).
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一种基于多物理场调制的超宽带线圆极化变换器
本文提出并研究了一种基于多物理场调制的超宽带线圆极化变换器(LCPC),该变换器采用固体等离子体和二氧化钒相结合的方法。所提出的LCPC将表现出三种状态,通过电气控制和温度(T)控制的方式进行调节。仿真结果表明,当所有固态等离子体区未被激发且温度<68℃时,3db AR波段为14.3 ~ 29.7 GHz(相对带宽为70%)。当所有固态等离子体区均被激发且温度<68℃时,3db AR频段分别变为14.4 ~ 23.4 GHz和28.6 ~ 35.9 GHz(相对带宽分别为47.61%和22.64%)。当所有固态等离子体区域未被激发且温度≥68℃时,3db AR波段将变为8.4 ~ 11.2 GHz和18.7 ~ 29.5 GHz(相对带宽分别为28.57%和44.81%)。
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