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首页> 外文期刊>Applied optics >Gating a channel photomultiplier with a fast high-voltage switch: reduction of afterpulse rates in a laser-induced fluorescence instrument for measurement of atmospheric OH radical concentrations
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Gating a channel photomultiplier with a fast high-voltage switch: reduction of afterpulse rates in a laser-induced fluorescence instrument for measurement of atmospheric OH radical concentrations

机译:用快速高压开关控制通道光电倍增管:降低激光诱导荧光仪中的后脉冲率,以测量大气中的OH自由基浓度

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摘要

By employing a commercially available high-voltage switch in a time-gating circuit to drive a channel photomultiplier (CPM), the afterpulse rates are significantly reduced in the time window to collect fluorescence >200 ns after the pulsed laser excitation. The CPM, kept deactivated under normal conditions (normally off), is turned on immediately after the passage of the laser pulse by shifting the voltage applied to the photocathode by 150 V to collect the fluorescence. When the detection system is used as part of a laser-induced fluorescence instrument to measure atmospheric OH radicals with the photon-counting method, the background signal is reduced by more than a factor of 10 as compared with our previous case where a conventional dynode-gated photomultiplier tube (PMT) is used, while the sensitivity toward the fluorescence is almost unchanged. A detection limit as low as 2 X 10~(5) radicals cm~(-3) or 0.008 parts per trillion by volume is achieved for OH, with an integration time of 1 min and a signal-to-noise ratio of 2, enabling sensitive detection of the important radical in the atmosphere. This system is a superior choice with higher sensitivity and cost effectiveness as compared with the gated PMTs utilizing a microchannel plate as an electron multiplier, and could also be used effectively in light detection and ranging (lidar) instruments, where a delayed scattering signal would be efficiently discriminated from afterpulses.
机译:通过在时间选通电路中使用市售的高压开关来驱动通道光电倍增管(CPM),可以在时间窗口中显着降低后脉冲速率,以收集脉冲激光激发后> 200 ns的荧光。在激光脉冲通过后,通过将施加到光电阴极的电压移动150 V以收集荧光,可以在正常条件下(通常关闭)保持停用的CPM开启。当将检测系统用作激光诱导荧光仪器的一部分,以光子计数法测量大气中的OH自由基时,与我们以前的传统倍增极-倍频技术相比,背景信号降低了10倍以上。使用门控光电倍增管(PMT),而对荧光的灵敏度几乎不变。 OH的检出限低至2 X 10〜(5)个自由基cm〜(-3)或0.008百万分之体积,积分时间为1分钟,信噪比为2,能够灵敏地检测到大气中的重要自由基。与使用微通道板作为电子倍增器的门控PMT相比,该系统是具有较高灵敏度和成本效益的优越选择,并且还可以有效地用于光检测和测距(激光)仪器中,在这些仪器中延迟的散射信号会有效地区别于余波。

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