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Trace detection of atmospheric NO_(2) by laser-induced fluorescence using a GaN diode laser and a diode-pumped YAG laser

机译:使用GaN二极管激光器和二极管泵浦YAG激光器通过激光诱导的荧光痕量检测大气中的NO_(2)

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摘要

We report on the development of a highly sensitive detection system for measuring atmospheric NO_(2) by means of a laser-induced fluorescence (LIF) technique at 473 nm using a diode-pumped Nd:YAG laser. A GaN-based laser diode emitting at 410 nm is also used as an alternative fluorescence-excitation source. For laboratory calibrations, standard NO_(2) gas is diluted with synthetic air and is introduced into a fluorescence-detection cell. The NO_(2) LIF signal is detected by a photomultiplier tube and processed by a photon-counting method. The minimum detectable limits of the NO_(2) instrument developed have been estimated to be 0.14 ppbv and 0.39 ppbv (parts per billion, 10~(-9), by volume) in 60 s integration time (signal-to-noise ratio of 2) for 473 and 410 nm excitation systems, respectively. Practical performance of the instrument has been demonstrated by the 24 hour continuous measurements of ambient NO_(2) in a suburban area.
机译:我们报告了一种通过使用二极管泵浦的Nd:YAG激光器在473 nm处通过激光诱导荧光(LIF)技术测量大气NO_(2)的高灵敏度检测系统的开发报告。在410 nm处发射的基于GaN的激光二极管也被用作荧光激发源。为了进行实验室校准,将标准NO_(2)气体用合成空气稀释,然后引入荧光检测池中。 NO_(2)LIF信号由光电倍增管检测并通过光子计数方法进行处理。在60 s积分时间内(信噪比为),已开发的NO_(2)仪器的最低可检测限据估计为0.14 ppbv和0.39 ppbv(十亿分之10-(-9),按体积计)。 2)分别用于473和410 nm激发系统。通过在郊区连续24小时连续测量环境NO_(2)证明了该仪器的实用性能。

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