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Development of a fluorescence-based point detector for biological sensing

机译:用于生物传感的荧光基点检测器的发展

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This paper presents the status of an ongoing development of a point detector for biological warfare agent sensing based on ultraviolet laser-induced fluorescence from single particles in air. The detector will measure the fluorescence spectra of single particles in a sheath flow air beam. The spectral detection part of the system consists of a grating and a photomultiplier tube array with 32 channels, which measure fluorescence spectra in the wavelength band from 300 nm to 650 nm. The detector is designed to measure laser induced fluorescence from single laser pulses and has been tested by measuring fluorescence from simulants of biological warfare agents in aqueous solution. The solutions were excited with laser pulses at the wavelengths of 293 nm and 337 nm. The paper also presents preliminary results on the sheath flow particle injector and time-resolved measurements of fluorescence from biological warfare agent simulants in solution.
机译:本文介绍了基于来自空气中单个颗粒的紫外激光诱导的荧光荧光的生物辐射剂检测点持续发展的状态。检测器将测量鞘流空气束中单个颗粒的荧光光谱。系统的光谱检测部分由具有32个通道的光栅和光电倍增管阵列组成,其测量波长带中的荧光光谱从300nm至650nm。检测器设计用于测量来自单个激光脉冲的激光诱导的荧光,并通过测量来自水溶液中的生物辐射剂的模拟剂的荧光来测试。将溶液激发在293nm和337nm的波长的激光脉冲中。本文还提出了溶液鞘流颗粒注射器上的初步结果,并在溶液中从生物战争试剂模拟中的荧光测量测量。

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