论文标题

多Quark Hadron的子结构(雪地2021白皮书)

Substructure of Multiquark Hadrons (Snowmass 2021 White Paper)

论文作者

Brambilla, Nora, Chen, Hua-Xing, Esposito, Angelo, Ferretti, Jacopo, Francis, Anthony, Guo, Feng-Kun, Hanhart, Christoph, Hosaka, Atsushi, Jaffe, Robert L., Karliner, Marek, Lebed, Richard, Lewis, Randy, Maiani, Luciano, Mathur, Nilmani, Meißner, Ulf-G., Pilloni, Alessandro, Polosa, Antonio Davide, Prelovsek, Sasa, Richard, Jean-Marc, Riquer, Veronica, Rosina, Mitja, Rosner, Jonathan L., Santopinto, Elena, Swanson, Eric S., Szczepaniak, Adam P., Takeuchi, Sachiko, Takizawa, Makoto, Wilczek, Frank, Yamaguchi, Yasuhiro, Zou, Bing-Song

论文摘要

近年来,有大量的实验证据证明存在异国情调的多Quark Hadron,即含有其他夸克的介子,超出了通常的夸克 - 易药对和巴里子,由三个以上的夸克组成。在所有有强大证据的情况下,它们至少包含一个重夸克q = c或b,其中大多数包括两个重夸克。这些发现引发了两个关键的理论问题:(a)如何在这些多Quark状态内组织夸克 - 作为一个在一个约束量中的所有夸克的紧凑型物体,通过彩色力量进行相互作用,也许是diquarks的重要作用,或者是deuteron like Hadronic的HADRONIC HADRONIC MOLECULES,由Light-Meson Exchange by By Light-Meson Byby? (b)我们应该期望其他哪些多Quark国家?这两个问题紧密地交织在一起。每个解释都提供了数据部分的自然解释,但都没有解释所有数据。两种结构都有可能出现在自然界中。某些状态也可能是紧凑和分子构型的叠加。该白皮书汇集了该领域许多主要从业者的贡献,代表了广泛的理论解释。我们讨论了未来的实验和现象学工作的重要性,这将使QCD中多Quark现象的理解更好。

In recent years there has been a rapidly growing body of experimental evidence for existence of exotic, multiquark hadrons, i.e. mesons which contain additional quarks, beyond the usual quark-antiquark pair and baryons which consist of more than three quarks. In all cases with robust evidence they contain at least one heavy quark Q=c or b, the majority including two heavy quarks. Two key theoretical questions have been triggered by these discoveries: (a) how are quarks organized inside these multiquark states -- as compact objects with all quarks within one confinement volume, interacting via color forces, perhaps with an important role played by diquarks, or as deuteron-like hadronic molecules, bound by light-meson exchange? (b) what other multiquark states should we expect? The two questions are tightly intertwined. Each of the interpretations provides a natural explanation of parts of the data, but neither explains all of the data. It is quite possible that both kinds of structures appear in Nature. It may also be the case that certain states are superpositions of the compact and molecular configurations. This Whitepaper brings together contributions from many leading practitioners in the field, representing a wide spectrum of theoretical interpretations. We discuss the importance of future experimental and phenomenological work, which will lead to better understandingof multiquark phenomena in QCD.

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