首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >Microscopic HFB plus QRPA predictions of dipole strength for astrophysics applications
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Microscopic HFB plus QRPA predictions of dipole strength for astrophysics applications

机译:微观HFB加上QRPA在天体物理学中对偶极子强度的预测

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Large-scale QRPA calculations of the E1-strength are performed on top of HFB calculations in order to derive the radiative neutron capture cross sections for the whole nuclear chart The HFB + QRPA predictions based on various Skyrme forces with different pairing prescriptions and parameterizations are confronted with experimental photoabsorption data for spherical nuclei. Within the approximations of the present model, the effective nucleon-nucleon interaction is probed with the GDR data. The dipole strengths obtained with the present HFB + QRPA model is finally used to estimate the radiative neutron capture cross section for all nuclei of relevance in astrophysics applications. The resulting rates are shown to be close to the one predicted with the previously determined HFBCS + QRPA model, but for neutron-rich nuclei to differ significantly from the ones obtained with the empirical Lorentzian-like formula. (C) 2004 Elsevier B.V. All rights reserved.
机译:E1强度的大规模QRPA计算是在HFB计算的基础上进行的,以便得出整个核图的辐射中子俘获截面。面对基于具有不同配对处方和参数设置的各种Skyrme力的HFB + QRPA预测具有球形核的实验光吸收数据。在本模型的近似范围内,利用GDR数据探测有效的核子-核子相互作用。最后,利用当前HFB + QRPA模型获得的偶极强度可用于估算天体物理学应用中所有相关核的辐射中子俘获截面。结果表明速率接近于先前确定的HFBCS + QRPA模型所预测的速率,但是富中子核与采用经验洛伦兹式公式获得的速率明显不同。 (C)2004 Elsevier B.V.保留所有权利。

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