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An effective digital pulse processing method for pile-up pulses in decay studies of short-lived nuclei

机译:短期核衰变研究中堆积脉冲有效数字脉冲处理方法

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With the charged-particle decay spectroscopy extended to the proton drip-line region, half-lives of nuclei of interest decrease rapidly. Consequently, severe signal piling-up resulting from the implanted ions and their successive decays in position sensitive detectors become more and more common. To extract the spectroscopic information from the pile-up pulses with good accuracy, a digital pulse analysis algorithm is presented in this paper and validated with the a decay of ~(219)Th and the internal conversion electron decays of ~(210,211)Ra isomers, all of which have ~us half-lives. The results show that with proper baseline correction, standard pulse construction and plateau-region fitting etc., the spectroscopic information of overlapping signals with time separation down to 80 ns and amplitude of individual pile-up pulse down to 70 keV, can be readily extracted.
机译:随着带电粒子衰减光谱延伸到质子滴水线区域,利息核的半衰期迅速降低。因此,由植入离子和位置敏感探测器的连续衰减产生的严重信号堆积变得越来越常见。为了以良好的精度从堆积脉冲中提取光谱信息,本文提出了一种数字脉冲分析算法,并用〜(219)TH的衰减和内部转化电子衰变验证〜(210,211)Ra异构体,所有这些都有〜美国半衰期。结果表明,采用适当的基线校正,标准脉冲结构和高原区域配件等,可以容易地提取与将下降到80keV的各个堆积脉冲的时间分离到80 ns和单个堆积脉冲的幅度重叠信号的光谱信息。

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