Emergence of Hadron Mass and Structure

M. Ding, C. Roberts, S. Schmidt
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引用次数: 26

Abstract

Visible matter is characterised by a single mass scale; namely, the proton mass. The proton’s existence and structure are supposed to be described by quantum chromodynamics (QCD); yet, absent Higgs boson couplings, chromodynamics is scale-invariant. Thus, if the Standard Model is truly a part of the theory of Nature, then the proton mass is an emergent feature of QCD; and emergent hadron mass (EHM) must provide the basic link between theory and observation. Nonperturbative tools are necessary if such connections are to be made; and in this context, we sketch recent progress in the application of continuum Schwinger function methods to an array of related problems in hadron and particle physics. Special emphasis is given to the three pillars of EHM—namely, the running gluon mass, process-independent effective charge, and running quark mass; their role in stabilising QCD; and their measurable expressions in a diverse array of observables.
强子质量和结构的出现
可见物质的特征是单一的质量尺度;也就是质子质量。质子的存在和结构可以用量子色动力学(QCD)来描述;然而,如果没有希格斯玻色子耦合,色动力学是尺度不变的。因此,如果标准模型真的是自然理论的一部分,那么质子质量就是量子cd的一个突现特征;和涌现强子质量(EHM)必须提供理论和观测之间的基本联系。如果要建立这样的联系,非摄动工具是必要的;在此背景下,我们概述了连续统Schwinger函数方法应用于强子和粒子物理中一系列相关问题的最新进展。特别强调了ehm的三大支柱,即运行胶子质量、与过程无关的有效电荷和运行夸克质量;它们在稳定QCD方面的作用;以及它们在各种可观测物中的可测量表达式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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