首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >Further explorations of Skyrme-Hartree-Fock-Bogoliubov mass formulas. IX: Constraint of pairing force to S-1(0) neutron-matter gap
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Further explorations of Skyrme-Hartree-Fock-Bogoliubov mass formulas. IX: Constraint of pairing force to S-1(0) neutron-matter gap

机译:Skyrme-Hartree-Fock-Bogoliubov质量公式的进一步探索。 IX:配对力对S-1(0)中子物质间隙的约束

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In this latest of our series of Skyrme-HFB mass models, HFB-16, we introduce the new feature of requiring that the contact pairing force reproduce at each density the S-1(0) pairing gap of neutron matter as determined in microscopic calculations with realistic nucleon-nucleon forces. We retain the earlier constraints on the Skyrme force of reproducing the energy-density curve of neutron matter, and of having an isoscalar effective mass of 0.8M in symmetric infinite nuclear matter at the saturation density; we also keep the recently adopted device of dropping Coulomb exchange. Furthermore, the correction term for the spurious energy of collective motion has a form that is known to favour fission barriers that are in good agreement with experiment. Despite the extra constraints on the effective force, we have achieved a better fit to the mass data than any other mean field model, the rms error on the 2149 measured masses of nuclei with N and Z >= 8 having been reduced to 0.632 MeV; the improvement is particularly striking for the most neutron-rich nuclei. Moreover, it turns out that even with no flexibility at all remaining for the pairing force, the spectral pairing gaps that we find suggest that level densities in good agreement with experiment should be obtained. This new force is thus particularly well-suited for astrophysical applications, such as stellar nucleosynthesis and neutron-star crusts. (c) 2008 Elsevier B.V. All rights reserved.
机译:在我们最新的Skyrme-HFB质量模型系列HFB-16中,我们引入了一项新功能,即要求接触配对力在每种密度下均能再现微观计算中确定的中子物质的S-1(0)配对间隙。具有逼真的核子-核子力。我们保留了对Skyrme力的早期约束,即再现中子物质的能量密度曲线,以及在饱和密度下对称无穷大核物质中等量有效质量为0.8M。我们还保留了最近采用的丢弃库仑交换的装置。此外,集体运动的寄生能量的校正项具有一种形式,该形式有利于裂变屏障,该裂变屏障与实验非常吻合。尽管对有效力有额外的限制,但我们已经比其他任何平均场模型更好地拟合了质量数据,在2149个测量的N和Z> = 8的原子核上,均方根误差降低到0.632 MeV。对于最富中子的原子核,这种改进尤为显着。而且,事实证明,即使配对力完全没有灵活性,我们发现的光谱配对间隙也表明应该获得与实验良好吻合的能级密度。因此,这种新力量特别适合天体应用,例如恒星核合成和中子星结壳。 (c)2008 Elsevier B.V.保留所有权利。

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