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Monte Carlo investigation and optimization of coincidence prompt gamma-ray neutron activation analysis

机译:蒙特卡洛研究和巧合瞬发伽马射线中子活化分析的优化

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摘要

Normal Prompt Gamma-Ray Neutron Activation Analysis (PGNAA) suffers from a large inherent noise or background. The coincidence PGNAA approach is being investigated for eliminating almost all of the interfering backgrounds and thereby significantly improving the signal-to-noise ratio (SNR). This can be done since almost all of the prompt gamma rays from elements of interest are emitted in coincidence except hydrogen. However, it has been found previously that while the use of two normal Nal detectors greatly reduces the background, the signal is also greatly reduced so that very little improvement in standard deviation is obtained. With the help of MCNP5, the general-purpose Monte Carlo N-Particle code, and CEARCPG, the specific purpose Monte Carlo code for Coincidence PGNAA, further optimization of the proposed coincidence system is being accomplished. The idea pursued here is the use of a large area plastic scintillation detector as the trigger for coincidence events together with a normal large Nal detector. In this approach the detection solid angle is increased greatly, which directly increases the probability of coincidence detection. The 2D-coincidence spectrum obtained can then be projected to the axis representing the Nal detector to overcome the drawback of low energy resolution and photopeak intensity of the plastic scintillation detector and utilize the overall higher coincidence counting rate. To reach the best coincidence detection, the placement of detectors, sample, and the moderator of the neutron source have been optimized through Monte Carlo simulation.
机译:常规瞬变伽马射线中子活化分析(PGNAA)具有较大的固有噪声或背景。正在研究PGNAA巧合方法,以消除几乎所有的干扰本底,从而显着提高信噪比(SNR)。之所以能够这样做,是因为除了氢之外,几乎所有来自感兴趣元素的即时伽玛射线都同时发射。但是,先前已经发现,尽管使用两个正常的Nal检测器可以大大降低背景,但信号也可以大大降低,因此在标准偏差方面几乎没有改善。借助MCNP5(通用的蒙特卡罗N粒子代码)和CEARCPG(用于重合的PGNAA的专用蒙特卡罗代码),正在实现所提出的重合系统的进一步优化。这里追求的想法是使用大面积塑料闪烁探测器作为巧合事件的触发源,同时使用普通的大型Nal探测器。在这种方法中,检测立体角大大增加,这直接增加了重合检测的可能性。然后可以将获得的2D重合谱投影到代表Nal检测器的轴上,以克服塑料闪烁检测器的低能量分辨率和光峰强度的缺点,并利用总体较高的重合计数率。为了达到最佳的重合检测,已通过蒙特卡洛模拟对检测器,样品和中子源的慢化剂的位置进行了优化。

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  • 作者单位

    Center for Engineering Applications of Radioisotopes (CEAR), North Carolina State University, Raleigh, NC 27695-7909, USA;

    Center for Engineering Applications of Radioisotopes (CEAR), North Carolina State University, Raleigh, NC 27695-7909, USA;

    Center for Engineering Applications of Radioisotopes (CEAR), North Carolina State University, Raleigh, NC 27695-7909, USA;

    Center for Engineering Applications of Radioisotopes (CEAR), North Carolina State University, Raleigh, NC 27695-7909, USA;

    Center for Engineering Applications of Radioisotopes (CEAR), North Carolina State University, Raleigh, NC 27695-7909, USA;

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  • 正文语种 eng
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  • 关键词

    coincidence; pgnaa; monte carlo; cearcpg;

    机译:巧合;pgnaa;monte carlo;cearcpg;

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