Influence of orthogonalization procedure on astrophysical S-factor for the direct α + d →6Li + γ capture process in a three-body model

E. M. Tursunov, A. Kadyrov
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引用次数: 2

Abstract

The astrophysical S-factor for the direct [Formula: see text] capture reaction is calculated in a three-body model based on the hyperspherical Lagrange-mesh method. A sensitivity of the E1 and E2 astrophysical S-factors to the orthogonalization method of Pauli forbidden states in the three-body system is studied. It is found that the method of orthogonalising pseudopotentials (OPP) yields larger isotriplet ([Formula: see text]) components than the supersymmetric transformation (SUSY) procedure. The E1 astrophysical S-factor shows the same energy dependence in both cases, but strongly different absolute values. At the same time, the E2 S-factor does not depend on the orthogonalization procedure. As a result, the OPP method yields a very good description of the direct data of the LUNA collaboration at low energies, while the SUSY transformation strongly underestimates the LUNA data.
三体模型中α + d→6Li + γ直接俘获过程正射电程序对天体物理s因子的影响
在基于超球面拉格朗日网格法的三体模型中,计算了直接捕获反应的天体物理s因子。研究了天体物理s因子E1和E2对三体系统泡利禁态正交化方法的敏感性。发现正交化伪势(OPP)方法比超对称变换(SUSY)过程产生更大的等三重态([公式:见文本])分量。E1天体物理s因子在两种情况下表现出相同的能量依赖性,但绝对值有很大不同。同时,E2 s因子不依赖于正交化过程。因此,OPP方法可以很好地描述低能量下LUNA合作的直接数据,而SUSY转换则严重低估了LUNA数据。
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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