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Nuclear energy density functionals constrained by low-energy QCD

机译:低能QCD限制的核能密度功能

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摘要

A microscopic framework of nuclear energy density functionals is reviewed, which establishes a direct relation between low-energy QCD and nuclear structure, synthesizing effective field theory methods and principles of density functional theory. Guided by two closely related features of QCD in the low-energy limit: a) in-medium changes of vacuum condensates, and b) spontaneous breaking of chiral symmetry; a relativistic energy density functional is developed and applied in studies of ground-state properties of spherical and deformed nuclei.
机译:综述了核能密度泛函的微观框架,建立了低能量子点与核结构之间的直接关系,综合了有效的场论方法和密度泛函理论的原理。在低能量范围内受到QCD的两个密切相关的特征的指导:a)真空冷凝物的中等变化,b)手性对称性的自发破坏;开发了相对论的能量密度泛函,并将其应用于球形和变形核的基态特性研究。

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