Nuclear level densities and γ-ray strength functions of 120,124Sn and their application in astrophysics

M. Markova, A. Larsen, Frank Leonel Garrote Bello
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Abstract

Nuclear level densities (NLDs) and γ-ray strength functions (GSFs)of 120;124Sn have been extracted with the Oslo method and additionally constrained with the novel Shape method. The GSFs were found to be in excellent agreement with the strengths from the inelastic relativistic proton scattering experiment. This comparison suggests the validity of the Brink-Axel hypothesisused as one of the key assumptions in astrophysical calculations. The extracted NLDs and GSFs were further used as experimental inputs to constrain the Maxwellian-averaged cross sections (MACS) for the radiative neutron capture process 119;123Sn (n, γ)120;124Sn using the the nuclear reaction code TALYS.
120,124Sn的核能级密度和γ射线强度函数及其在天体物理中的应用
用Oslo方法提取了120;124Sn的核能级密度(nld)和γ射线强度函数(gsf),并用新颖的Shape方法对其进行了约束。发现gsf与非弹性相对论质子散射实验的强度非常吻合。这一对比表明,作为天体物理计算的关键假设之一,布林克-阿克塞尔假设是有效的。提取的nld和gsf进一步作为实验输入,使用核反应代码TALYS约束辐射中子捕获过程119;123Sn (n, γ)120;124Sn的麦克斯韦平均截面(MACS)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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