首页> 外文会议>2017 First IEEE MTT-S International Microwave Bio Conference >Complex dielectric characterization of African trypanosomes for aptamer-based terahertz sensing applications
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Complex dielectric characterization of African trypanosomes for aptamer-based terahertz sensing applications

机译:用于基于适体的太赫兹传感应用的非洲锥虫的复杂介电特性

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In this work, the first broadband dielectric characterization of African trypanosome parasites from 0.2 to 2.5 THz is presented as a foundation for future sensor applications in the mm- and THz-wave regime. After demonstrating detectability, the complex permittivity of a 5 micrometer thick parasite film is extracted directly from measurements of a terahertz time domain spectrometry setup using a chain matrix model based extraction algorithm. Results show lack of specific resonances but a moderate relative permittivity above 2.4 at low loss. Furthermore, an area raster scan of the permittivity is performed to evaluate the parameter stability over larger surfaces.
机译:在这项工作中,首次提出了非洲锥虫从0.2到2.5 THz的宽带介电特性,为将来在毫米波和太赫兹波领域的传感器应用奠定了基础。在证明可检测性之后,使用基于链矩阵模型的提取算法,直接从太赫兹时域光谱仪的测量结果中提取出5微米厚的寄生虫膜的复介电常数。结果表明,在低损耗下,缺乏特异性共振,但介电常数高于2.4。此外,进行介电常数的区域光栅扫描以评估较大表面上的参数稳定性。

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