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Detection of ammonium nitrate inside vehicles by nuclear quadrupole resonance

机译:核四极共振检测车内硝酸铵

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摘要

The development of a system for the detection of ammonium nitrate (AN) in vehicles by nuclear quadrupole resonance (NQR) is described. The results from studies of the penetration of radio-frequency (RF) magnetic fields inside certain metal enclosures, including full-scale vehicles, were critical in the design of a novel high-Q resonant probe. The probe was shaped not only for optimal penetration of RF magnetic fields into vehicles, but also for optimal rejection of RF interference and ease of shielding. A full-scale technical demonstrator was designed, built and successfully demonstrated, using novel pulse sequences to generate and detect NQR signals from AN concealed within the boot (trunk) of a car and in the loading bay of a (metal-sided) van. Among the key technical advances that made possible the effective operation of this system was the development of pulse sequences that generate detectable NQR responses for RF magnetic fields that are both very weak and very inhomogeneous.
机译:描述了通过核四极共振(NQR)检测车辆中硝酸铵(AN)的系统的开发。对包括全尺寸车辆在内的某些金属外壳内部的射频(RF)磁场的渗透研究的结果对于设计新型高Q共振探头至关重要。探头的形状不仅可以使射频磁场最佳地渗透到车辆中,而且还可以最佳地抑制射频干扰并易于屏蔽。设计,建造并成功演示了一个完整的技术演示器,使用新颖的脉冲序列从隐藏在汽车行李箱(厢式货车)和(金属面)厢式货车装载舱中的AN生成并检测NQR信号。在使该系统有效运行成为可能的关键技术进步中,脉冲序列的发展可为非常弱且非常不均匀的RF磁场产生可检测的NQR响应。

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