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Optical Emission Detector Based on Plasma Discharge Generation at the Tip of a Multimaterial Fiber

机译:基于多材料纤维尖端等离子体放电产生的光发射检测器

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摘要

Experimental development of a compact optical emission detector based on the assembly of a polymer-metal and a standard silica fiber is presented in this paper. This device is exploited in a proof-of-principle experiment for gas detection application by means of plasma spectroscopy in the visible-Near Infrared spectral region. A multimode fiber (MMF) is associated with a functional hollow dual-electrodes elongated structure fabricated by the direct preform-to-fiber homothetic co-drawing. A potential of 1.5 kV is applied between the two electrodes embedded inside the composite cladding, which generates an atmospheric pressure dc glow discharge at the tip of the fiber bundle. The emitted light is then collected by the MMF for optical diagnostics. Probing of different atmospheres is presented at the end of this study.
机译:本文介绍了一种基于聚合物金属和标准二氧化硅纤维组装的紧凑型光发射检测器的实验开发。在原理证明实验中将该设备用于通过可见光谱-近红外光谱区域中的等离子体光谱进行气体检测的应用。多模光纤(MMF)与功能性空心双电极细长结构关联,该结构通过直接的预成型件到纤维的同构共拉伸工艺制造。在嵌入复合包层内部的两个电极之间施加1.5 kV的电势,这会在光纤束的尖端产生大气压dc辉光放电。然后,MMF收集发出的光以进行光学诊断。本研究的结尾介绍了对不同大气层的探测。

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