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Nuclear-bound quarkonia and heavy-flavor hadrons

机译:核对Quarkonia和重磅强子

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摘要

In our quest to win a deeper understanding of how QCD actually works, the study of the binding of heavy quarkonia and heavy-flavor hadrons to atomic nuclei offers enormous promise. Modern experimental facilities such as FAIR, Jefferson Lab at 12 GeV and J-PARC offer exciting new experimental opportunities to study such systems. These experimental advances are complemented by new theoretical approaches and predictions, which will both guide these experimental efforts and be informed and improved by them. This review will outline the main theoretical approaches, beginning with QCD itself, summarize recent theoretical predictions and relate them both to past experiments and those from which we may expect results in the near future. (C) 2018 Elsevier B.V. All rights reserved.
机译:在我们寻求更深入了解QCD实际工作的理解中,重型Quarkonia和重磅状况与原子核的结合的研究提供了巨大的承诺。 在12 GEV和J-PARC的公平,杰斐逊实验室等现代实验设施为学习此类系统提供了令人兴奋的新实验机会。 这些实验进展是通过新的理论方法和预测补充,这两者都将引导这些实验努力并被他们所通知和改进。 该审查将概述主要的理论方法,从QCD本身开始,总结了最近的理论预测,并将它们与过去的实验相关,并将我们可能预期在不久的将来产生的结果。 (c)2018 Elsevier B.v.保留所有权利。

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