欧洲核子研究中心n_TOF中natC(n,p)和natC(n,d)反应的测量

IF 4.5 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
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引用次数: 0

摘要

在欧洲核子研究中心的n_TOF装置上首次研究了(n,p)和(n,d)反应的横截面对natC的能量依赖性,从粒子探测阈值到25 MeV。测量是用两台由位置敏感硅ΔE-E探测器制成的望远镜进行的,测量范围从20°到140°。通过对实验装置的蒙特卡罗模拟,确定了探测器的效率。对残余11B、12B、13B核的激发能级的角分布和分支比进行了各种假设。特别使用了基于TALYS-2.0代码的理论计算,并根据这些分布的变化确定了分析结果中的系统不确定度。碳上(n,p)和(n,d)反应的n_TOF数据具有比现有文献更高的精度和更宽的能量范围。与目前不同文库的评估结果进行比较,发现与n_TOF结果存在相当大的差异,而与TALYS-2.0对该轻元素的预测非常一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of the natC(n,p) and natC(n,d) reactions from n_TOF at CERN
The energy dependence of the cross section of the (n,p) and (n,d) reactions on natC has been studied for the first time at the n_TOF facility at CERN, from the particle detection threshold up to 25 MeV. The measurement was performed with two telescopes made of position-sensitive silicon ΔE-E detectors, covering the angular range from 20 to 140. A detector efficiency has been determined by means of Monte Carlo simulations of the experimental setup. Various assumptions on the angular distributions and branching ratios of the excited levels of the residual 11B, 12B, 13B nuclei were considered. In particular, theoretical calculations based on the TALYS-2.0 code were used and the systematic uncertainties in the analysis results were determined from the variations in these distributions. The n_TOF data on the (n,p) and (n,d) reaction on carbon are characterized by a higher accuracy and wider energy range than currently available in literature. A comparison with current evaluations from different libraries reveals a rather significant disagreement with the n_TOF results, while a remarkable agreement is observed with the prediction of TALYS-2.0 for this light element.
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来源期刊
Physics Letters B
Physics Letters B 物理-物理:综合
CiteScore
9.10
自引率
6.80%
发文量
647
审稿时长
3 months
期刊介绍: Physics Letters B ensures the rapid publication of important new results in particle physics, nuclear physics and cosmology. Specialized editors are responsible for contributions in experimental nuclear physics, theoretical nuclear physics, experimental high-energy physics, theoretical high-energy physics, and astrophysics.
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