Impact of sensor metal thickness on microwave spectroscopy sensitivity for individual particles and biological cells analysis

W. Chen, D. Dubuc, K. Grenier
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引用次数: 1

Abstract

This paper focuses on evaluating the impact of metal thickness of a microwave coplanar based sensor dedicated to the microwave dielectric spectroscopy of single particles and individual biological cells. A sensitivity study has therefore been achieved for metal thicknesses comprised between 0.3 and 20 μm. After the validation of electromagnetic simulations with measurements of 10 μ m-diameter polystyrene bead, both capacitive and conductive contrasts have been defined for the different metal thickness of the sensor. The maximal sensitivity improvement is therefore achieved for a thickness value similar to the diameter of the particle or cell to measure. Capacitive and conductive contrasts are increased by a factor 2.4 and 1.75 respectively. The study leads consequently to an important design and fabrication rule of such a sensor.
传感器金属厚度对单个粒子和生物细胞分析微波光谱灵敏度的影响
本文主要研究了金属厚度对微波共面传感器单粒子和单个生物细胞微波介电光谱的影响。因此,对0.3 ~ 20 μm的金属厚度进行了灵敏度研究。通过测量直径为10 μ m的聚苯乙烯珠的电磁仿真验证,定义了不同金属厚度下传感器的电容性和导电性对比。因此,当厚度值与要测量的颗粒或细胞的直径相似时,可以实现最大的灵敏度改进。电容性和导电性对比度分别增加了2.4倍和1.75倍。由此得出了这种传感器设计和制造的重要准则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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