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TNT Vapor Detection Based on a Lab-on-a-Fiber: Achieving a Millimeter-Scale Sensing Element on Fiber

机译:基于光纤实验室的TNT蒸气检测:在光纤上实现毫米级的传感元件

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In this paper, we discuss in detail the lab-on-a-fiber (LOF) concept that we proposed earlier (Ma , Proc. 4th Eur. Workshop Opt. Fiber Sens., 2010, vol. 7653, PP. 76531E-76531E-4), and present a specific example of this platform intended for trace vapor TNT detection. We show how we arrive at the current LOF design by examining the performance, technical difficulties, and complexities of various possible architectures. In the design solution adopted in our example, the sensing section occupies a space measuring only 1.6 $, times ,$1.6 $, times ,$0.8 mm, but contains several optical and chemical components/functions including a transmission/reflection mirror and TNT sensory film coated on a segment of the side wall of the fiber core. The fiber itself thus serves as the film substrate and when coated with the film becomes an evanescent-wave form fluorescent emission power collector. Its tiny dimensions notwithstanding, the LOF performs several simultaneous functions, including power density tuning and stray excitation light blocking. In addition, this LOF platform features ease of system construction and polymer film application. We demonstrate its fast response to TNT vapor, in the form of a 29% signal drop after 10 s of exposure.
机译:在本文中,我们详细讨论了我们之前提出的光纤实验室(LOF)概念(Ma,Proc。4th Eur。Workshop Opt。Fiber Sens。,2010年,第7653卷,PP.76531E-76531E -4),并提供该平台用于痕量蒸气TNT检测的特定示例。通过检查各种可能的体系结构的性能,技术难题和复杂性,我们展示了如何得出当前的LOF设计。在我们的示例中采用的设计解决方案中,感测部分仅占1.6 mm×1.6 mm×0.8 mm的空间,但包含多个光学和化学组件/功能,包括透射/反射镜和涂有TNT的传感膜在纤维芯侧壁的一部分上。因此,纤维本身用作膜基材,并且当用膜涂覆时,其成为van逝波形式的荧光发射集电器。尽管尺寸很小,但LOF可以同时执行多项功能,包括功率密度调整和杂散激发光阻挡。此外,该LOF平台具有易于构建系统和应用聚合物薄膜的特点。我们展示了其对TNT蒸气的快速响应,在暴露10 s后信号下降了29%。

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