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Global and local level density models

机译:全局和局部水平密度模型

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Four different level density models, three phenomenological and one microscopic, are consistently parameterized using the same set of experimental observables. For each of the phenomenological models, the Constant Temperature Model, the Back-shifted Fermi gas Model and the Generalized Superfluid Model, a version without and with explicit collective enhancement is considered. Moreover, a recently published microscopic combinatorial model is compared with the phenomenological approaches and with the same set of experimental data. For each nuclide for which sufficient experimental data exists, a local level density parameterization is constructed for each model. Next, these local models have helped to construct global level density prescriptions, to be used for cases for which no experimental data exists. Altogether, this yields a collection of level density formulae and parameters that can be used with confidence in nuclear model calculations. To demonstrate this, a large-scale validation with experimental discrete level schemes and experimental cross sections and neutron emission spectra for various different reaction channels has been performed. (C) 2008 Elsevier B.V. All rights reserved.
机译:使用同一组实验观测值,始终对四个不同的水平密度模型(三个现象学模型和一个微观模型)进行参数设置。对于每种现象学模型,恒温模型,后移费米气体模型和广义超流体模型,都考虑了没有显式集体增强的版本。此外,将最近发布的微观组合模型与现象学方法以及同一组实验数据进行了比较。对于每个存在足够实验数据的核素,为每个模型构建局部水平密度参数化。接下来,这些局部模型有助于构建全局级别的密度处方,用于没有实验数据的情况。总而言之,这产生了可以可靠地用于核模型计算中的能级密度公式和参数的集合。为了证明这一点,已经对各种不同反应通道的实验离散水平方案,实验截面和中子发射光谱进行了大规模验证。 (C)2008 Elsevier B.V.保留所有权利。

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