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基于扭曲双层超表面的介电材料微波偏振传感

Microwave Polarization Sensing for Dielectric Materials Based on a Twisted Dual-Layer Meta-Surface.

作者信息

Xiao Hong, Yan Sen, Chen Juan

机构信息

School of Information and Communications Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Materials (Basel). 2022 Sep 26;15(19):6655. doi: 10.3390/ma15196655.

Abstract

A microwave sensor is proposed based on a chiral twisted dual-layer meta-surface. Elliptical angle and polarization rotation angle are used to characterize the different dielectric constants of materials. The dielectric films consisting of polydimethylsiloxane and barium titanate with volume fractions 0%, 10%, 15%, 20% are prepared and tested for a proof of concept. The measured results show that the Q factors of polarization rotation angle and elliptical angle peak are 11.85 when the volume fraction of barium titanate is 20%, which is 75.5% higher than 6.75 of the transmission resonance peak, and the figures of merit of the polarization rotation angle and elliptical angle peak are 0.99 and 0.86, which are 73.7% and 50.9% higher than the 0.57 of transmission resonance, respectively. Compared to the resonance sensing method, polarization sensing not only has a better Q factor and figure of merit while maintaining similar sensitivity, but also obtains more characterization information due to the double-parameter sensing, which provide a new idea for the development of high-sensitivity microwave sensors.

摘要

提出了一种基于手性扭曲双层超表面的微波传感器。利用椭圆角和极化旋转角来表征材料的不同介电常数。制备了体积分数分别为0%、10%、15%、20%的由聚二甲基硅氧烷和钛酸钡组成的介电薄膜并进行测试以验证概念。测量结果表明,当钛酸钡的体积分数为20%时,极化旋转角和椭圆角峰值的品质因数为11.85,比传输共振峰值的6.75高75.5%,极化旋转角和椭圆角峰值的品质因数分别为0.99和0.86,分别比传输共振的0.57高73.7%和50.9%。与共振传感方法相比,极化传感不仅在保持相似灵敏度的同时具有更好的品质因数和品质因数,而且由于双参数传感还获得了更多的表征信息,这为高灵敏度微波传感器的发展提供了新思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8aa9/9571774/02eebf989ad3/materials-15-06655-g001.jpg

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