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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Comparison between variational Monte Carlo and shell model calculations of neutrinoless double beta decay matrix elements in light nuclei
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Comparison between variational Monte Carlo and shell model calculations of neutrinoless double beta decay matrix elements in light nuclei

机译:浅色核细胞中基因氏型双β衰变矩阵元素的变分蒙特卡罗和壳模型计算的比较

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Benchmark comparisons between many-body methods are performed to assess the ingredients necessary for an accurate calculation of neutrinoless double beta decay matrix elements. Shell model and variational Monte Carlo (VMC) calculations are carried out for A = 10 and 12 nuclei. Different variational wavefunctions are used to evaluate the uncertainties in the ab initio calculations, finding fairly small differences between the VMC double beta decay matrix elements. For shell model calculations, the role of model space truncation, radial wavefunction choices, and short-range correlation are investigated and all found to be important. Based on the detailed comparisons between the VMC and shell model approaches, we conclude that accurate descriptions of neutrinoless double beta decay matrix elements require a proper treatment of both long-range and short-range correlations. (C) 2019 The Authors. Published by Elsevier B.V.
机译:进行许多身体方法之间的基准比较,以评估准确计算中性抑制双β衰变矩阵元素所需的成分。 壳模型和变分蒙特卡罗(VMC)计算用于A = 10和12个核。 不同的变分波文件用于评估AB Initio计算中的不确定性,发现VMC双β衰减矩阵元件之间的相当小的差异。 对于壳牌模型计算,研究了模型空间截短,径向波段选择和短距离相关的作用,并且发现都很重要。 基于VMC和壳模型方法之间的详细比较,我们得出结论,中子素双β衰变矩阵元件的准确描述需要适当处理远程和短距离相关性。 (c)2019年作者。 由elsevier b.v出版。

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