Brambilla N, Eidelman S, Foka P, Gardner S, Kronfeld A S, Alford M G, Alkofer R, Butenschoen M, Cohen T D, Erdmenger J, Fabbietti L, Faber M, Goity J L, Ketzer B, Lin H W, Llanes-Estrada F J, Meyer H B, Pakhlov P, Pallante E, Polikarpov M I, Sazdjian H, Schmitt A, Snow W M, Vairo A, Vogt R, Vuorinen A, Wittig H, Arnold P, Christakoglou P, Di Nezza P, Fodor Z, Garcia I Tormo X, Höllwieser R, Janik M A, Kalweit A, Keane D, Kiritsis E, Mischke A, Mizuk R, Odyniec G, Papadodimas K, Pich A, Pittau R, Qiu J-W, Ricciardi G, Salgado C A, Schwenzer K, Stefanis N G, von Hippel G M, Zakharov V I
Physik Department, Technische Universität München, James-Franck-Straße 1, 85748 Garching, Germany.
Budker Institute of Nuclear Physics, SB RAS, Novosibirsk , 630090 Russia ; Novosibirsk State University, Novosibirsk , 630090 Russia.
Eur Phys J C Part Fields. 2014;74(10):2981. doi: 10.1140/epjc/s10052-014-2981-5. Epub 2014 Oct 21.
We highlight the progress, current status, and open challenges of QCD-driven physics, in theory and in experiment. We discuss how the strong interaction is intimately connected to a broad sweep of physical problems, in settings ranging from astrophysics and cosmology to strongly coupled, complex systems in particle and condensed-matter physics, as well as to searches for physics beyond the Standard Model. We also discuss how success in describing the strong interaction impacts other fields, and, in turn, how such subjects can impact studies of the strong interaction. In the course of the work we offer a perspective on the many research streams which flow into and out of QCD, as well as a vision for future developments.
我们着重介绍了由量子色动力学(QCD)驱动的物理学在理论和实验方面的进展、现状以及面临的开放性挑战。我们讨论了强相互作用如何与广泛的物理问题紧密相连,这些问题涵盖了从天体物理学和宇宙学到粒子物理学与凝聚态物理学中的强耦合复杂系统,以及对超出标准模型的物理学的探索等多个领域。我们还讨论了在描述强相互作用方面取得的成功如何影响其他领域,以及反过来这些领域如何影响对强相互作用的研究。在这项工作过程中,我们对流入和流出QCD的众多研究方向提供了一个视角,以及对未来发展的展望。