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使用有效场论精确确定π介子-核子耦合常数

Precision Determination of Pion-Nucleon Coupling Constants Using Effective Field Theory.

作者信息

Reinert P, Krebs H, Epelbaum E

机构信息

Ruhr-Universität Bochum, Fakultät für Physik und Astronomie, Institut für Theoretische Physik II, D-44780 Bochum, Germany.

出版信息

Phys Rev Lett. 2021 Mar 5;126(9):092501. doi: 10.1103/PhysRevLett.126.092501.

Abstract

The pion-nucleon coupling constants determine the strength of the long-range nuclear forces and play a fundamental part in our understanding of nuclear physics. While the charged- and neutral-pion couplings to protons and neutrons are expected to be very similar, owing to the approximate isospin symmetry of the strong interaction, the different masses of the up and down quarks and electromagnetic effects may result in their slightly different values. Despite previous attempts to extract these coupling constants from different systems, our knowledge of their values is still deficient. In this Letter, we present a precision determination of these fundamental observables with fully controlled uncertainties from neutron-proton and proton-proton scattering data using chiral effective field theory. To achieve this goal, we use a novel methodology based on the Bayesian approach and perform, for the first time, a full-fledged partial-wave analysis of nucleon-nucleon scattering up to the pion production threshold in the framework of chiral effective field theory, including a complete treatment of isospin-breaking effects and our own determination of mutually consistent data. The resulting values of the pion-nucleon coupling constants are accurate at the percent level and show no significant charge dependence. These results mark an important step toward developing a precision theory of nuclear forces and structure.

摘要

π介子-核子耦合常数决定了长程核力的强度,在我们对核物理的理解中起着基础性作用。尽管由于强相互作用的近似同位旋对称性,带电π介子和中性π介子与质子和中子的耦合预计非常相似,但上夸克和下夸克的不同质量以及电磁效应可能导致它们的值略有不同。尽管此前曾尝试从不同系统中提取这些耦合常数,但我们对其值的了解仍然不足。在本信函中,我们利用手征有效场理论,通过中子-质子和质子-质子散射数据,对这些基本可观测量进行了精确测定,并对不确定性进行了完全控制。为实现这一目标,我们采用了一种基于贝叶斯方法的新颖方法,并首次在手征有效场理论框架内,对核子-核子散射进行了全面的分波分析,直至π介子产生阈值,包括同位旋破缺效应的完整处理以及我们自己对相互一致数据的确定。π介子-核子耦合常数的最终值在百分之一的水平上是准确的,并且没有显示出明显的电荷依赖性。这些结果标志着朝着发展精确的核力与结构理论迈出了重要一步。

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