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Digital Signal Processing Application in Nuclear Spectroscopy

机译:数字信号处理在核光谱学中的应用

摘要

Digital signal processing algorithms for nuclear particle spectroscopy are described along with a digital pile-up elimination method applicable to equidistantly sampled detector signals pre-processed by a charge-sensitive preamplifier. The signal processing algorithms provided as recursive one- or multi-step procedures which can be easily programmed using modern computer programming languages. The influence of the number of bits of the sampling analogue-to-digital converter to the final signal-to-noise ratio of the spectrometer considered. Algorithms for a digital shaping-filter amplifier, for a digital pile-up elimination scheme and for ballistic deficit correction were investigatedusing a high purity germanium detector. The pile-up elimination method was originally developed for fission fragment spectroscopy using a Frisch-grid back-to-back double ionisation chamber and was mainly intended for pile-up elimination in case of high alpha-radioactivity of the fissile target. The developed pile-up elimination method affects only the electronic noise generated by the preamplifier. Therefore, the influence of the pile-up elimination scheme on the final resolution of the spectrometer investigated in terms of the distance between piled-up pulses. The efficiency of developed algorithms compared with other signal processing schemes published in literature.Keywords: x- and gamma-ray spectroscopy, computer data analysis, ionization chambers, interpolation; curve fitting, numerical differentiation and integration, integral and integrodifferential equations.
机译:描述了用于核粒子光谱的数字信号处理算法,以及适用于由电荷敏感型前置放大器预处理的等距采样探测器信号的数字堆积消除方法。信号处理算法以递归的单步或多步过程提供,可以使用现代计算机编程语言轻松编程。采样模数转换器的位数对所考虑的光谱仪的最终信噪比的影响。使用高纯度锗检测器研究了数字整形滤波器放大器,数字堆积消除方案和弹道缺陷校正算法。堆积消除法最初是为使用弗里施网格背对背双电离室进行裂变碎片光谱学而开发的方法,主要用于在易裂变靶材具有高α放射性的情况下消除堆积。所开发的堆积消除方法仅影响前置放大器产生的电子噪声。因此,根据堆积脉冲之间的距离,研究了堆积消除方案对光谱仪最终分辨率的影响。与文献中发表的其他信号处理方案相比,已开发算法的效率。关键字:X射线和γ射线光谱法,计算机数据分析,电离室,插值;曲线拟合,数值微分和积分,积分和积分微分方程。

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