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Revealing the structure of light pseudoscalar mesons at the electron-ion collider

机译:揭示电子 - 离子撞机处的轻型伪胶质型胶囊的结构

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The questions of how the bulk of the Universe's visible mass emerges and how it is manifest in the existence and properties of hadrons are profound, and probe the heart of strongly interacting matter. Paradoxically, the lightest pseudoscalar mesons appear to be key to a further understanding of the emergent mass and structure mechanisms. These mesons, namely, the pion and kaon, are the Nambu-Goldstone boson modes of quantum chromodynamics (QCD). Unravelling their partonic structure and the interplay between emergent and Higgs-boson mass mechanisms is a common goal of three interdependent approaches-continuum QCD phenomenology, lattice-regularised QCD, and the global analysis of parton distributions-linked to experimental measurements of hadron structure. Experimentally, the anticipated electron-ion collider will enable a revolution in our ability to study pion and kaon structures, accessed by scattering from the 'meson cloud' of the proton through the Sullivan process. With the goal of enabling a suite of measurements that can address these questions, we examine key reactions that identify the critical detector-system requirements needed to map tagged pion and kaon cross-sections over a wide range of kinematics. The excellent prospects for extracting pion structural, functional, and form-factor data are outlined, and similar prospects for kaon structures are discussed in the context of a worldwide programme. The successful completion of the programme outlined herein will deliver deep, far-reaching insights into the emergence of pions and kaons, their properties, and their role as QCD's Goldstone boson modes.
机译:宇宙可见质量的大部分是如何产生的,以及它如何在强子的存在和性质中表现出来的,这些问题都是非常深刻的,它们探索了强相互作用物质的核心。矛盾的是,最轻的伪标量介子似乎是进一步理解涌现的质量和结构机制的关键。这些介子,即π介子和kaon介子,是量子色动力学(QCD)中的Nambu Goldstone玻色子模式。揭示它们的部分子结构以及涌现和希格斯玻色子质量机制之间的相互作用是三种相互依赖的方法的共同目标:连续QCD唯象学、晶格正则化QCD,以及与强子结构实验测量相关的部分子分布的整体分析。在实验上,预期中的电子-离子对撞机将使我们研究π介子和kaon结构的能力发生一场革命,通过沙利文过程从质子的“介子云”散射而来。为了实现一系列能够解决这些问题的测量,我们研究了关键反应,这些反应确定了在广泛的运动学范围内绘制标记π介子和kaon横截面所需的关键探测器系统要求。概述了提取π介子结构、功能和形状因子数据的良好前景,并结合一项全球计划讨论了kaon结构的类似前景。本文概述的计划的成功完成将对π介子和π介子的出现、它们的性质以及它们作为QCD的Goldstone玻色子模式的作用提供深刻而深远的见解。

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