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A methodology for the intercomparison of nuclear fission codes using TALYS

机译:使用TALYS进行核裂变代码比对的方法

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Codes for the calculation of fission observables are frequently used to describe experimentally observed phenomena as well as provide predictions in cases where measurements are missing. Assumptions in the models, and tuning of parameters within the codes, often result in a good reproduction of experimental data. In this work we propose a methodology, coded in the newly developed program DELFIN (De-Excitation of FIssion fragmeNts), that can be used to compare some of the assumptions of the various models. Our code makes use of the fission fragments information after scission and processes them in an independent and consistent fashion to obtain measurable fission observables (such as ν(A) distributions and Isomeric Fission Yield ratios). All the available information from the models, such as fragments' excitation energies, spin distributions and yields are provided as input to DELFIN that uses the nuclear reaction code TALYS to handle the de-excitation of the fission fragments. In this way we decouple the fragments relaxation from the actual fission models. We report here the first results of a comparison carried out on the GEF, Point-by-Point and FREYA models for thermal fission of 235U and 239Pu and spontaneous fission of 252Cf.
机译:裂变观测值的计算代码通常用于描述实验观察到的现象,并在缺少测量值的情况下提供预测。模型中的假设以及代码中参数的调整通常可以很好地再现实验数据。在这项工作中,我们提出了一种方法,该方法在新开发的程序DELFIN(裂变碎片的消除激励)中进行了编码,可用于比较各种模型的某些假设。我们的代码在分裂后利用裂变碎片信息,并以独立且一致的方式对其进行处理,以获取可测量的裂变观测值(例如ν(A)分布和Isomeric裂变产率)。来自模型的所有可用信息,例如碎片的激发能,自旋分布和产率,都作为DELFIN的输入提供,DELFIN使用核反应代码TALYS处理裂变碎片的去激励。这样,我们将碎片弛豫与实际裂变模型解耦。我们在这里报告在235U和239Pu的热裂变和252Cf的自发裂变的GEF,逐点和FREYA模型上进行的比较的第一结果。

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