首页> 外文会议>Conference on Vibrational Spectroscopy-Based Sensor Systems Nov 1-2, 2001, Newton, USA >Microphotonic Sensors For The Rapid Detection Of The Presence Of Explosive Gas Mixtures
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Microphotonic Sensors For The Rapid Detection Of The Presence Of Explosive Gas Mixtures

机译:微光子传感器,用于快速检测爆炸性气体混合物的存在

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A first generation, microphotonic sensor for rapid (10 ms response time) measurement of vapors from the hydrocarbon-based fuels JP-8, DF-2, and gasoline has been developed at the U.S. Army Research Laboratory. This sensor is based upon a previously reported laser mixing technique that uses two tunable diode lasers emitting in the near-infrared spectral region to measure concentrations of gases having unstructured absorption spectra. The fiber-mixed laser beam consists of two wavelengths, one of which is absorbed by the fuel vapor, and one of which is not absorbed. By sinusoidally modulating the power of the two lasers at the same frequency but 180 degrees out of phase, a sinusoidal signal is generated at the detector (when the target gas is present in the line of sight). The signal amplitude, measured using standard phase sensitive detection techniques, is proportional to fuel vapor concentration. A second generation sensor, designed to measure the full envelope of the first overtone C-H vibrations in middle distillate fuels is currently being developed. Both sensors are described. Limits of detection using the first generation sensor are reported for vapors of the three fuels studied.
机译:美国陆军研究实验室已开发出第一代微光子传感器,用于快速(响应时间为10毫秒)测量烃基燃料JP-8,DF-2和汽油中的蒸气。该传感器基于先前报道的激光混合技术,该技术使用在近红外光谱区域发射的两个可调二极管激光器来测量具有非结构化吸收光谱的气体浓度。混合纤维的激光束由两个波长组成,其中之一被燃料蒸气吸收,而其中一个未被吸收。通过以相同的频率但异相180度对两个激光器的功率进行正弦调制,在检测器上会产生正弦信号(当目标气体出现在视线中时)。使用标准的相位敏感检测技术测得的信号幅度与燃料蒸汽浓度成正比。目前正在开发第二代传感器,该传感器旨在测量中间馏分燃料中第一次谐波C-H振动的整个包络线。描述了两个传感器。报告了使用第一代传感器检测到的三种燃料蒸气的检测极限。

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