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Digital pulse-shape discrimination of fast neutrons and γ rays

机译:快中子和γ射线的数字脉冲形状识别

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Discrimination of the detection of fast neutrons and γ rays in a liquid scintillator detector has been investigated using digital pulse-processing techniques. An experimental setup with a ~(252)Cf source, a BC-501 liquid scintillator detector, and a BaF_2 detector was used to collect waveforms with a 100Ms/s, 14 bit sampling ADC. Three identical ADCs were combined to increase the sampling frequency to 300Ms/s. Four different digital pulse-shape analysis algorithms were developed and compared to each other and to data obtained with an analogue neutron-γ discrimination unit. Two of the digital algorithms were based on the charge comparison method, while the analogue unit and the other two digital algorithms were based on the zero-crossover method. Two different figure-of-merit parameters, which quantify the neutron-γ discrimination properties, were evaluated for all four digital algorithms and for the analogue data set. All of the digital algorithms gave similar or better figure-of-merit values than what was obtained with the analogue setup. A detailed study of the discrimination properties as a function of sampling frequency and bit resolution of the ADC was performed. It was shown that a sampling ADC with a bit resolution of 12 bits and a sampling frequency of 100Ms/s is adequate for achieving an optimal neutron-γ discrimination for pulses having a dynamic range for deposited neutron energies of 0.3-12 MeV. An investigation of the influence of the sampling frequency on the time resolution was made. A FWHM of 1.7 ns was obtained at 100Ms/s.
机译:已经使用数字脉冲处理技术研究了在液体闪烁体探测器中快速中子和γ射线探测的区分。具有〜(252)Cf源,BC-501液体闪烁检测器和BaF_2检测器的实验装置用于通过100Ms / s,14位采样ADC收集波形。组合了三个相同的ADC,以将采样频率提高到300Ms / s。开发了四种不同的数字脉冲形状分析算法,并将它们相互比较,并与使用模拟中子-γ鉴别单元获得的数据进行比较。其中两种数字算法均基于电荷比较法,而模拟单元和另外两种数字算法均基于零交叉法。对于所有四种数字算法和模拟数据集,评估了量化中子-γ辨别特性的两个不同的品质因数参数。与通过模拟设置获得的值相比,所有数字算法都给出了相似或更好的品质因数值。根据ADC的采样频率和位分辨率对区分特性进行了详细研究。结果表明,具有12位的位分辨率和100Ms / s的采样频率的采样ADC足以为具有0.3-12 MeV沉积中子能量动态范围的脉冲实现最佳中子γ鉴别。研究了采样频率对时间分辨率的影响。在100Ms / s下获得1.7 ns的FWHM。

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