首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Corrigendum to 'Fission fragment atomic number measurements using bragg detectors' [Nucl. Instrum. Methods Phys. Res. A 957 (2020) 163397]
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Corrigendum to 'Fission fragment atomic number measurements using bragg detectors' [Nucl. Instrum. Methods Phys. Res. A 957 (2020) 163397]

机译:“使用布拉格检测器测量裂变碎片原子序数”的更正[Nucl。Chem。Sci。,2004,5,3,5]。仪器方法物理。 Res。 957(2020)163397]

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Following the publication of article "Fission Fragment Atomic Number Measurements Using Bragg Detectors" by N.V. Sosnin et al. in NIM A 957 (2020) 163397, an error has been noticed in the identification and assignments of the light fission fragment data presented in the work. The error affects Figs. 3, 5 and 6, as well as Tables 1 and 2. The revised versions of the affected figures and tables are presented here. The conclusions drawn in the publication regarding the charge-resolving power of the Bragg detector, the accuracy of SRIM-2013 and the comparison with the previous range data remain unaffected. Furthermore, the title of Ref. [31] should read 'Experience with in-pile fission targets at LOHENGRIN'. The authors would like to apologize for any inconvenience caused.
机译:N.V.Sosnin等人发表了文章“使用布拉格检测器的裂变碎片原子数测量”。在NIM A 957(2020)163397中,在工作中呈现的光裂变碎片数据的识别和分配中发现了错误。该错误影响图。请参见图3、5和6以及表1和2。此处列出了受影响的图形和表的修订版本。该出版物中有关布拉格检测器的电荷分辨能力,SRIM-2013的精度以及与以前的范围数据进行比较的结论均不受影响。此外,Ref。的标题。 [31]应该阅读“在LOHENGRIN的堆内裂变靶的经验”。对于由此带来的任何不便,作者深表歉意。

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