用聚变蒸发级联代码估算重离子核反应的截面

MOMENTO Pub Date : 2024-01-02 DOI:10.15446/mo.n68.106810
Daniel Castiblanco
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引用次数: 0

摘要

本文介绍了对聚变-蒸发核反应的研究。从详细描述这种核反应背后的半经典理论框架开始,通过 Python 代码估算了复合核形成和形成后各种蒸发残余物的截面等量及其截面(与事件数成正比)。该代码将复合核的形成过程及其随后衰变为多个残余核的过程分割开来,作为一个连续的粒子发射过程。为了优先考虑第一近似理论,详细描述了与射弹-目标聚变、轻粒子蒸发(n、p、α)和裂变有关的半经典和统计源的不同核模型。计算了约 90 个产生过剩质子残留物的拟议反应的横截面。总的来说,所获得的结果显示出明显的差异,特别是在重核反应中,尽管即使考虑到代码的局限性,也发现了一些一致之处。造成这种差异的主要原因可能与某些通道的缺失或高估有关,这些通道可能会影响事件的比例。这就促使我们在未来进行更复杂的分析,以便获得更广泛的通道。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CROSS SECTION ESTIMATION FOR HEAVY ION NUCLEAR REACTIONS WITH A CASCADE CODE OF FUSION EVAPORATION
This article presents a study of fusion-evaporation nuclear reactions. Starting from a detailed description of the semi-classical theoretical framework behind this nuclear reaction, quantities such as the cross section of compound nucleus formation and various evaporation residues after its formation, as well as their cross sections (proportional to the events number), were estimated by means of a Python code. The code splits the compound nucleus formation process and its subsequent decay into several residual nuclei, which occurs as a sequential particle emission. In order to prioritize a first approximation theory, different nuclear models, with semi-classical and statistical origin, related to projectile-target fusion, light particle evaporation (n, p, α) and fission, were described in detail. The values obtained with the computational routine developed were compared with experimental values and results from the PACE code. Cross sections were calculated for about 90 proposed reactions that produce residues with excess protons. In general, the results obtained show significant discrepancies, especially in heavy nuclei reactions, although some agreements are found even taking into account the limitations of the code. The main reason for this discrepancy may be associated with the lack or overestimation of some channels which may affect the proportion of events. This motivates a more sophisticated analysis in the future that could allow a wider range of channels.
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