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A quality survey on different shielding configurations of gamma ray detector used with a portable PGNAA system

机译:便携式PGNAA系统使用的伽马射线探测器不同屏蔽配置的质量调查

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The appropriate gamma-ray detector shielding configuration is critical for a precise prompt gamma neutron activation analysis (PGNAA) measurement. The shielding material has to prevent the radiation damage to the detector crystal and it must produce less activation gamma rays, whether prompt or delayed, which may interfere the gamma ray spectrum of the sample. In this research, using common shielding materials, a number of combinations have been studies to form a 50 cm long shield for portable PGNAA system against both fast and slow neutrons as well as gamma rays emitted by 20Ci Am-Be source. The measurement results show that in contrast with conventional shadow cone in which the shielding material starts with 20 cm heavy metals such as iron and ends with 30 cm polymer materials, in portable PGNAA systems, the shielding material gives better results if it starts with about 40 cm borated polymer material and ends with an appropriate thickness (7 cm to 10 cm) of heavy metal such as tungsten. (C) 2015 Elsevier Ltd. All rights reserved.
机译:正确的伽马射线探测器屏蔽配置对于精确的瞬发伽马中子活化分析(PGNAA)测量至关重要。屏蔽材料必须防止辐射对检测器晶体的损害,并且屏蔽材料必须产生较少的激活伽玛射线,无论是即时还是延迟的,这可能会干扰样品的伽玛射线谱。在这项研究中,使用常见的屏蔽材料,已经研究了多种组合方式,以形成一个50厘米长的屏蔽,用于便携式PGNAA系统,以抵抗快中子和慢中子以及20Ci Am-Be源发出的伽玛射线。测量结果表明,与常规的阴影锥相反,在常规的阴影锥中,屏蔽材料以20厘米重金属(例如铁)开始,以30厘米聚合物材料结束,而在便携式PGNAA系统中,如果屏蔽材料以大约40厘米开始,则效果更好。硼酸化的聚合物材料,并以适当厚度(7厘米至10厘米)的重金属(例如钨)结尾。 (C)2015 Elsevier Ltd.保留所有权利。

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