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朝着理解重子共振的进展。

Progress towards understanding baryon resonances.

机构信息

Florida State University, Department of Physics, Tallahassee, FL 32306, USA.

出版信息

Rep Prog Phys. 2013 Jul;76(7):076301. doi: 10.1088/0034-4885/76/7/076301. Epub 2013 Jun 20.

Abstract

The composite nature of baryons manifests itself in the existence of a rich spectrum of excited states, in particular in the important mass region 1-2 GeV for the light-flavoured baryons. The properties of these resonances can be identified by systematic investigations using electromagnetic and strong probes, primarily with beams of electrons, photons, and pions. After decades of research, the fundamental degrees of freedom underlying the baryon excitation spectrum are still poorly understood. The search for hitherto undiscovered but predicted resonances continues at many laboratories around the world. Recent results from photo- and electroproduction experiments provide intriguing indications for new states and shed light on the structure of some of the known nucleon excitations. The continuing study of available data sets with consideration of new observables and improved analysis tools have also called into question some of the earlier findings in baryon spectroscopy. Other breakthrough measurements have been performed in the heavy-baryon sector, which has seen a fruitful period in recent years, in particular at the B factories and the Tevatron. First results from the large hadron collider indicate rapid progress in the field of bottom baryons. In this review, we discuss the recent experimental progress and give an overview of theoretical approaches.

摘要

重子的复合性质表现在存在丰富的激发态谱,特别是在轻味重子的重要质量区域 1-2 GeV。这些共振的性质可以通过使用电磁和强探针的系统研究来识别,主要是使用电子、光子和π介子束。经过几十年的研究,重子激发谱的基本自由度仍然知之甚少。在世界各地的许多实验室中,仍在继续寻找迄今尚未发现但已预测到的共振。光致和电致产生实验的最新结果为新状态提供了有趣的迹象,并揭示了一些已知核子激发态的结构。考虑到新的可观测量和改进的分析工具,对现有数据集的持续研究也对重子光谱学中的一些早期发现提出了质疑。在重子领域也进行了其他突破性的测量,近年来该领域取得了丰硕的成果,特别是在 B 工厂和 Tevatron 上。来自大型强子对撞机的初步结果表明,在底夸克重子领域取得了快速进展。在这篇综述中,我们讨论了最近的实验进展,并概述了理论方法。

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