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首页> 外文期刊>Sensor Letters: A Journal Dedicated to all Aspects of Sensors in Science, Engineering, and Medicine >A Refractive Index Based Micro-Structured Sensor for Blood Components Detection in Terahertz Regime
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A Refractive Index Based Micro-Structured Sensor for Blood Components Detection in Terahertz Regime

机译:基于折射率的微结构传感器,用于太赫兹制度的血液成分检测

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摘要

In this article, a hexagonal packing photonic crystal fiber based optical sensor is presented and analyzed for different blood components identification using terahertz (THz) signal. The numerical analysis of the proposed sensor is performed by using finite element method based software Comsol V5.0. The proposed fiber is investigated in terahertz frequency spectrum from 1.3 THz to 2.5 THz for higher relative sensitivity and numerical aperture as well as lower absorption loss and confinement loss for better sensing applications. The reported hollow core fiber provide better interaction of light and the analytes, so that high relative sensitivity of 83.45%, 81.20%, 80.78%, 79.60% and 78.80% are obtained for RBCs, Hemoglobin, WBCs, Plasma and Water respectively at a particular geometric condition. Moreover, very low confinement loss and absorption loss with high numerical aperture is offered by the proposed sensor in terahertz spectrum. This optical sensor may be an alternative option to detect blood components present in the blood in a very efficient manner.
机译:在本文中,呈现六边形包装光子晶纤维的光学传感器,并使用太赫兹(THz)信号进行不同的血液成分识别。通过使用基于有限元方法的软件COMSOL V5.0来执行所提出的传感器的数值分析。将所提出的纤维从1.3THz到2.5THz中研究了在太赫兹频谱中,以获得更高的相对灵敏度和数值孔径,以及更低的吸收损失和更好的感测应用的吸收损失。报道的中空芯纤维提供了更好的光和分析物的相互作用,因此在特定的RBC,血红蛋白,WBC,血浆和水分中,高相对敏感性为83.45%,81.20%,80.78%,79.60%和78.80%。几何条件。此外,所提出的传感器在太赫兹光谱中提供了非常低的限制损失和具有高数值孔径的吸收损失。该光学传感器可以是以非常有效的方式检测血液中存在的血液成分的替代选择。

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