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NQR detection of explosive simulants using RF atomic magnetometers

机译:使用射频原子磁力计的NQR爆炸性模拟物检测

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摘要

Nuclear Quadrupole Resonance (NQR) is a highly selective spectroscopic method that can be used to detect and identify a number of chemicals of interest to the defense, national security, and law enforcement community. In the past, there have been several documented attempts to utilize NQR to detect nitrogen bearing explosives using induction sensors to detect the NQR RF signatures. We present here our work on the NQR detection of explosive simulants using optically pumped RF atomic magnetometers. RF atomic magnetometers can provide an order of magnitude (or more) improvement in sensitivity versus induction sensors and can enable mitigation of RF interference, which has classically has been a problem for conventional NQR using induction sensors. We present the theory of operation of optically pumped RF atomic magnetometers along with the result of laboratory work on the detection of explosive simulant material. An outline of ongoing work will also be presented along with a path for a fieldable detection system.
机译:核四极共振(NQR)是一种高度选择性的光谱方法,可用于检测和识别国防,国家安全和执法界感兴趣的多种化学物质。过去,已经有数次尝试使用NQR通过感应传感器检测NQR RF信号来检测含氮炸药的尝试。我们在此介绍使用光泵浦射频原子磁力计对爆炸模拟物进行NQR检测的工作。与感应传感器相比,RF原子磁力计可以在灵敏度上提高一个数量级(或更多),并且可以减轻RF干扰,这对于使用感应传感器的常规NQR通常是一个问题。我们介绍了光泵浦射频原子磁力计的工作原理,以及在爆炸性模拟物质检测方面的实验室工作结果。还将介绍正在进行的工作的概要以及可现场检测系统的路径。

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