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Three-Frequency Composite Multipulse Nuclear Quadrupole Resonance Technique for Explosive Detection

机译:三频复合多脉冲核四极子爆炸检测技术

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摘要

New method of multifrequency nuclear quadrupole resonance (NQR) for the explosive detection has been proposed. This technique consists of application of the series of composite excitation circles, each consisting of two or three successive pulses of different frequencies. In this work, we study in detail the multipulse sequence consisting of n excitation sets, each set consists of three pulses. The first pulse is applied with frequency ν −, the second pulse with frequency ν 0, and the third pulse with frequency ν –, but with a shifted phase. The NQR signal is detected at the frequency ν +. The maximal amplitude of the detected signal is obtained by tuning the pulse parameters at frequencies ν − and ν 0. We have shown that the phase of the NQR signal at the frequency ν + second part of the composite pulse with the frequency ν 0 the signals with different phases to suppress the spurious signals. The method could be used for increasing the NQR signal, avoiding the spurious signals and improving the reliability of NQR detection. Possible applications of the method for the explosive detection are also discussed.
机译:提出了一种用于爆炸物探测的多频核四极共振新方法。该技术包括一系列复合激励圆的应用,每个复合激励圆由两个或三个不同频率的连续脉冲组成。在这项工作中,我们将详细研究由n个激励组组成的多脉冲序列,每个组由三个脉冲组成。第一个脉冲的频率为ν-,第二个脉冲的频率为ν0 ,第三个脉冲的频率为ν-,但具有相移。在频率ν+ 处检测到NQR信号。通过在频率ν-和ν0 上调整脉冲参数,可以获得检测到的信号的最大振幅。我们已经表明,NQR信号在频率为ν0的复合脉冲第二部分的频率为π+时,具有不同相位的信号可以抑制杂散信号。该方法可用于增加NQR信号,避免杂散信号,提高NQR检测的可靠性。还讨论了爆炸物检测方法的可能应用。

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  • 来源
    《Applied Magnetic Resonance》 |2012年第4期|p.547-556|共10页
  • 作者单位

    Kazan Power Engineering State University, 420066, Kazan, Russian Federation;

    Gebze Institute of Technology, P.K.141, 41400, Gebze-Kocaeli, Turkey;

    Kazan Power Engineering State University, 420066, Kazan, Russian Federation;

    Gebze Institute of Technology, P.K.141, 41400, Gebze-Kocaeli, Turkey;

    Gebze Institute of Technology, P.K.141, 41400, Gebze-Kocaeli, Turkey;

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