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Relativistic nuclear model with point-couplings constrained by QCD and chiral symmetry

机译:QCD和手性对称约束点耦合的相对论核模型

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We derive a microscopic relativistic point-coupling model of nuclear many-body dynamics constrained by in-medium QCD sum rules and chiral symmetry. The effective Lagrangian is characterized by density dependent coupling strengths, determined by chiral one- and two-pion exchange and by QCD sum rule constraints for the large isoscalar nucleon self-energies that arise through changes of the quark condensate and the quark density at finite baryon density. This approach is tested in the analysis of the equations of state for symmetric and asymmetric nuclear matter, and of bulk and single-nucleon properties of finite nuclei. In comparison with purely phenomenological mean-field approaches, the built-in QCD constraints and the explicit treatment of pion exchange restrict the freedom in adjusting parameters and functional forms of density dependent couplings. It is shown that chiral (two-pion exchange) fluctuations play a prominent role for nuclear binding and saturation, whereas strong scalar and vector fields of about equal magnitude and opposite sign, induced by changes of the QCD vacuum in the presence of baryonic matter, generate the large effective. spin-orbit potential in finite nuclei. (C) 2004 Elsevier B.V. All rights reserved.
机译:我们推导了一个微观的相对论点耦合模型,该模型通过中等QCD和规则和手性对称性约束了核多体动力学。有效的拉格朗日方程的特征在于密度依赖性的耦合强度,该强度取决于手性一键和两键交换以及QCD和规则约束,这些约束是由于夸克冷凝物和夸克密度在有限重子上的变化而产生的大等比例核子自能的。密度。在分析对称核和非对称核物质的状态方程以及有限核的整体和单核子性质时,对这种方法进行了测试。与纯现象学平均场方法相比,内置的QCD约束和对偶子交换的明确处理限制了调整参数和依赖密度的耦合的函数形式的自由。结果表明,手性(两价离子交换)涨落对于核键合和饱和起着重要作用,而在重子物质存在下,QCD真空的变化会引起强的标量场和矢量场,其大小相等且符号相反。产生大的效果。有限核中的自旋轨道势。 (C)2004 Elsevier B.V.保留所有权利。

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