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High-Precision Method for Revealing Hidden Substances by Means of Tagged Neutrons

机译:通过标记中子揭示隐性物质的高精度方法

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摘要

A new method of employing A(n, n)A reactions of inelastic tagged-neutron scattering is proposed for revealing hidden substances. In contrast to the well-known method where substances are identified by measuring the spectrum of gamma rays, the new method consists in identifying substances by measuring the spectrum of neutrons. The neutron energy is measured by the time-of-flight method via detecting a (, n) pair and invoking the parameters of tagged neutrons. The detection of a neutron in a pair with a photon is also a factor that reduces the rate of accumulation of useful events. As is shown in the present study, however, the method in question possesses a number of important special features owing to which it boasts high precision and efficiency, as well as the ability of revealing a broad range of elements and hidden substances of small volume. A numerical simulation of both methods is performed. It is shown that the required time of measurements within the proposed method is one order of magnitude shorter, which makes it possible to circumvent that main difficulty encountered in applying the known method and associated with a low resource and a high cost of neutron sources.
机译:采用(n,n)的新方法是提出了无弹性标记 - 中子散射反应的影响,用于揭示隐性物质。与众所周知的方法相比,通过测量γ射线的光谱来鉴定物质,新方法通过测量中子的光谱来构思物质。通过飞行时间方法通过检测(,n)对并调用标记中子的参数来测量中子能量。与光子的对中的中子的检测也是降低有用事件累积速率的因素。然而,如本研究所示,所讨论的方法具有许多重要的特殊功能,它具有高精度和效率,以及揭示广泛元素和小体积的隐藏物质的能力。进行两种方法的数值模拟。结果表明,所提出的方法内的所需测量时间是一个幅度较短的,这使得可以规避在应用已知方法和低资源和中子源的低成本中遇到的主要困难和相关的阶段。

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