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The Use Of Compton Scattering In Detecting Anomaly In Soil-Possible Use In Pyromaterial Detection

机译:康普顿散射在解热中检测土壤中的异常散射

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The Compton scattering is able to determine the signature of land mine detection based on dependency of density anomaly and energy change of scattered photons. In this study, 4.43 MeV gamma of the Am-Be source was used to perform Compton scattering. Two detectors were placed between source with distance of 8 cm and radius of 1.9 cm. Detectors of thallium-doped sodium iodide NaI(TI) was used for detecting gamma ray. There are 9 anomalies used in this simulation. The physical of anomaly is in cylinder form with radius of 10 cm and 8.9 cm height. The anomaly is buried 5 cm deep in the bed soil measured 80 cm radius and 53.5 cm height. Monte Carlo methods indicated the scattering of photons is directly proportional to density of anomalies. The difference between detector response with anomaly and without anomaly namely contrast ratio values are in a linear relationship with density of anomalies. Anomalies of air, wood and water give positive contrast ratio values whereas explosive, sand, concrete, graphite, limestone and polyethylene give negative contrast ratio values. Overall, the contrast ratio values are greater than 2 % for all anomalies. The strong contrast ratios result a good detection capability and distinction between anomalies.
机译:康普顿散射能够基于密度异常的依赖性和散射光子的能量变化来确定陆地矿物检测的签名。在这项研究中,使用4.43 Mev Gamma的AM-BE源进行康普顿散射。将两个探测器放置在距离距离为8cm和半径为1.9厘米之间。铊掺杂碘化钠Nai(Ti)的探测器用于检测γ射线。在此模拟中使用了9个异常。异常物理呈气缸形式,半径为10厘米,高度为8.9厘米。异常在床土中埋入5厘米,测量80厘米半径和53.5厘米的高度。蒙特卡罗方法表示光子的散射与异常密度成比例。具有异常和不含异常的检测器响应之间的差异是对比度值值与异常密度的线性关系。空气,木材和水的异常给出阳性对比度值,而爆炸性,砂,混凝土,石墨,石灰石和聚乙烯产生负对比度值。总的来说,对比度值对于所有异常的值大于2%。强对比度率产生良好的检测能力和异常之间的区别。

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