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Differential Surface Plasmon Resonance Sensor for the Detection of Chemicals and Biochemicals

机译:差分表面等离子体共振传感器,用于化学物质和生物化学物质的检测

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Surface plasmon resonance is one the most common optical sensing techniques for the detection of chemicals and biochemicals, although still mainly confined to lab applications. Typically, these sensors are made by a thin gold layer deposited on a glass prism or on an optical fiber similar to those used in telecom applications. Key advantages of this technique are the possibility to specifically detect different chemicals through functionalization of the metal surface and the high sensitivity, although the latter may turn into a weakness in long term monitoring applications due to cross-sensitivity to parasitic effects. To overcome this limitation the paper proposes a novel sensor implementation with a cascaded double sensing area, particularly suited for long term monitoring of pollutant since one sensing area is actually used to detect the desired molecules, while the other for compensating drifts due to fluctuations, misalignments and temperature variations. The paper addresses mainly the prism-based implementation, but the proposed configuration is suited also for an all-fiber approach. Examples of practical implementation of the proposed techniques are given, evidencing an accuracy improvement of more than an order of magnitude.
机译:表面等离子体激元共振是检测化学物质和生化物质的最常见的光学传感技术之一,尽管它仍主要局限于实验室应用。通常,这些传感器由沉积在玻璃棱镜或光纤上的金薄层制成,类似于电信应用中使用的那些。该技术的主要优点是可以通过金属表面的功能化和高灵敏度来特异性检测不同的化学物质,尽管由于对寄生效应的交叉敏感性,后者在长期监测应用中可能会变得很弱。为了克服这一限制,本文提出了一种具有级联双传感区域的新型传感器实现方案,特别适合于污染物的长期监测,因为一个传感区域实际上用于检测所需的分子,而另一个传感区域用于补偿由于波动,错位引起的漂移和温度变化。本文主要介绍基于棱镜的实现,但是建议的配置也适用于全光纤方法。给出了所提出的技术的实际实现方式的示例,证明了精度提高了一个数量级以上。

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