使用介电谐振器为基础的微波探针表征液体

M. Cordoba-Erazo, T. Weller
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引用次数: 14

摘要

本文提出了一种基于介质谐振器的低损耗有损液体表征微波探针。当探针在原位条件下工作时,观察到探针对液体介电常数变化的灵敏度有所提高。谐振器质量因数的测量表明,探头能够分辨0.04左右的低损耗液体的变化。探针的空间分辨率为10 μm,并通过在距离为10 μm的距离上扫描覆盖30 μm厚矿物油层的MMIC探测器进行了实验验证。扫描结果证实,在电路顶部的矿物油层的存在提高了探针的灵敏度,而不会降低空间分辨率。利用探针和样品的集总元素模型模拟的数据支持测量结果。
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Liquids characterization using a dielectric resonator-based microwave probe
A dielectric resonator-based microwave probe for low loss and lossy liquids characterization is presented in this paper. When the probe is operated under in-situ conditions, improvement of the probe sensitivity to variations in the permittivity of the liquid was observed. Measurements of the quality factor of the resonator reveal that the probe is able to resolve variations around 0.04 in e' for low loss liquids. The spatial resolution of the probe is 10 μm, and was experimentally verified by scanning a MMIC detector covered with a 30 μm thick layer of mineral oil, at a standoff distance of 10 μm. Scanning results confirm that the presence of the mineral oil layer on top of the circuit improves the sensitivity of the probe without degrading the spatial resolution. Simulated data using a lumped-element model of the probe and sample support the measured results.
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