论文标题

改进了中微子应用的FIFRELIN DE激发模型

Improved FIFRELIN de-excitation model for neutrino applications

论文作者

Almazan, H., Bernard, L., Blanchet, A., Bonhomme, A., Buck, C., Chalil, A., Chebboubi, A., Sanchez, P. del Amo, Atmani, I. El, Labit, L., Lamblin, J., Letourneau, A., Lhuillier, D., Licciardi, M., Lindner, M., Litaize, O., Materna, T., Pessard, H., Real, J. -S., Ricol, J. -S., Roca, C., Rogly, R., Salagnac, T., Savu, V., Schoppmann, S., Soldner, T., Stutz, A., Thulliez, L., Vialat, M.

论文摘要

使用GD负载的有机液体闪烁体对中微子的实验研究,GD同位素脱离的精确建模具有极大的兴趣。最近在立体声实验的目的是使用FIFRELIN代码,用于在中子捕获后进行GD驱引激的建模,以便对检测效率进行良好的控制。在这项工作中,我们报告了FIFRELIN脱激模型中最近的添加,目的是进一步增强脱离激发描述。现在,来自EGAF数据库的实验过渡强度包括在FIFRELIN CASCADES中,以改善光谱较高能量部分的描述。此外,现在在FIFRELIN中实现γ射线之间的角相关性,以说明它们之间的相对各向异性。另外,现在在整个光谱范围内更精确地处理转换电子,而随后的X射线发射也被解释了。通过模拟立体声检测器内部各个位置的中子捕获来测试上述改进的影响。 GD同位素的最新FIFRELIN模拟的存储库可供社区提供,并有可能扩大适用于不同应用的其他同位素。

The precise modeling of the de-excitation of Gd isotopes is of great interest for experimental studies of neutrinos using Gd-loaded organic liquid scintillators. The FIFRELIN code was recently used within the purposes of the STEREO experiment for the modeling of the Gd de-excitation after neutron capture in order to achieve a good control of the detection efficiency. In this work, we report on the recent additions in the FIFRELIN de-excitation model with the purpose of enhancing further the de-excitation description. Experimental transition intensities from EGAF database are now included in the FIFRELIN cascades, in order to improve the description of the higher energy part of the spectrum. Furthermore, the angular correlations between γ rays are now implemented in FIFRELIN, to account for the relative anisotropies between them. In addition, conversion electrons are now treated more precisely in the whole spectrum range, while the subsequent emission of X rays is also accounted for. The impact of the aforementioned improvements in FIFRELIN is tested by simulating neutron captures in various positions inside the STEREO detector. A repository of up-to-date FIFRELIN simulations of the Gd isotopes is made available for the community, with the possibility of expanding for other isotopes which can be suitable for different applications.

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