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Special Nuclear Materials Detection Using IEC Fusion Pulsed Neutron Source

机译:使用IEC聚变脉冲中子源进行特殊核材料检测

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Special Nuclear Materials (SNM) detection efforts have largely been divided into two main groups: active and passive. Passive techniques are highly desirable in that a radiation source need not be employed in order to detect fissile materials which broadcast a clear radiative signature. However, disadvantages can be seen in HEU (Highly Enriched Uranium) detection, for example, where the system's efficacy is limited by its ability to detect a weak self-radiative signature from U. Active interrogation provides a catalyst for amplifying HEU's presence vis-a-vis fission event inducement, which in turn yields a starker signature which can be discerned through an understanding of fissile materials and neutron transport in various media. Ongoing work in the Fusion Technology Institute's Inertial Electrostatic Confinement (IEC) Experiment has focused on using the pulsed D-D neutrons from an IEC to interrogate the presence of HEU in an enclosed space. The paper begins with a brief description of the neutron-based detection schemes of Delayed Neutron Analysis (DNA) and Differential Die-Away (DDA). Experimental delayed neutron counts of ninety above the background at an interrogating neutron flux of 5.5×10~4 n/cm~2-s are seen to confirm MCNP modeling results. MCNP is also utilized to probe future concepts in neutron-based active interrogating SNM detection systems using DDA analysis.
机译:特殊核材料(SNM)的检测工作大致分为两个主要类别:主动和被动。非常需要无源技术,因为不需要使用辐射源来检测广播清晰辐射特征的易裂变材料。但是,例如在HEU(高浓缩铀)检测中可以看到缺点,例如,该系统的功效受到其检测到U发出的微弱自辐射信号的能力的限制。主动询问为放大HEU的存在提供了催化剂。裂变事件的诱因,进而产生一个鲜明的特征,可以通过对裂变材料和中子在各种介质中的传输的理解来辨别。融合技术研究所的惯性静电限制(IEC)实验正在进行的工作集中在使用来自IEC的脉冲D-D中子来询问HEU在封闭空间中的存在。本文首先简要介绍了基于中子的延迟中子分析(DNA)和差模死亡(DDA)检测方案。在5.5×10〜4 n / cm〜2-s的中子通量下,实验得到的延迟中子数比本底高90倍,证实了MCNP建模结果。 MCNP还用于利用DDA分析在基于中子的主动询问SNM检测系统中探究未来的概念。

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  • 来源
    《Fusion Science and Technology 》 |2009年第1期| 540-544| 共5页
  • 作者单位

    Plexus Corporation, Neenah , WI;

    Fusion Technology Institute, UW-Madison, 1500 Engineering Drive, Madison, WI 53706;

    Sandia National Laboratories, Albuquerque, NM;

    Fusion Technology Institute, UW-Madison, 1500 Engineering Drive, Madison, WI 53706;

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