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Pulse pileup correction method for gamma-ray spectroscopy in high radiation fields

机译:高辐射场伽马射线光谱脉冲堆积校正方法

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The detector suffers from pulse pileup by overlapping of the signals when it was used in high radiation fields. The pulse pileup deteriorates the energy spectrum and causes count losses due to random coincidences, which might not resolve within the resolving time of the detection system. In this study, it is aimed to propose a new pulse pileup correction method. The proposed method is to correct the start point of the pileup pulse. The parameters are obtained from the fitted exponential curve using the peak point of the previous pulse and the start point of the pileup pulse. The amplitude at the corrected start point of the pileup pulse can be estimated by the peak time of the pileup pulse. The system is composed of a NaI (Tl) scintillation crystal, a photomultiplier tube, and an oscilloscope. A 61?μCi137Cs check-source was placed at a distance of 3?cm, 5?cm, and 10?cm, respectively. The gamma energy spectra for the radioisotope of137Cs were obtained to verify the proposed method. As a result, the correction of the pulse pileup through the proposed method shows a remarkable improvement of FWHM at 662?keV by 29, 39, and 7%, respectively.
机译:当在高辐射场中使用时,探测器通过信号重叠而受到脉冲堆叠。脉冲堆叠会使能谱劣化,并导致由于随机巧合而导致计数损耗,这可能无法在检测系统的解析时间内解析。在这项研究中,旨在提出一种新的脉冲堆积校正方法。所提出的方法是校正堆叠脉冲的起点。使用先前脉冲的峰值和堆叠脉冲的起点,从拟合指数曲线获得参数。可以通过堆叠脉冲的峰值时间估计堆积脉冲的校正起点处的幅度。该系统由NaI(TL)闪烁晶体,光电倍增管和示波器组成。将61ΩμCI137CS校验源分别放置在3Ωcm,5Ωcm和10?cm的距离处。获得137℃的放射性同位素的γ能谱以验证提出的方法。结果,通过所提出的方法校正脉冲堆积的校正显示出在662℃下的FWHM变化,分别为29,39和7%。

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