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Recent development in SU(3) covariant baryon chiral perturbation theory

机译:SU(3)协变重子手性扰动理论的最新进展

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Baryon chiral perturbation theory (BChPT), as an effective field theory of low-energy quantum chromodynamics (QCD), has played and is still playing an important role in our understanding of non-perturbative strong-interaction phenomena. In the past two decades, inspired by the rapid progress in lattice QCD simulations and the new experimental campaign to study the strangeness sector of low-energy QCD, many efforts have been made to develop a fully covariant BChPT and to test its validity in all scenarios. These new endeavours have not only deepened our understanding of some long-standing problems, such as the power-counting-breaking problem and the convergence problem, but also resulted in theoretical tools that can be confidently applied to make robust predictions. Particularly, the manifestly covariant BChPT supplemented with the extended-on-mass-shell (EOMS) renormalization scheme has been shown to satisfy all analyticity and symmetry constraints and converge relatively faster compared to its non-relativistic and infrared counterparts. In this article, we provide a brief review of the fully covariant BChPT and its latest applications in the u, d, and s three-flavor sector.
机译:重子手性扰动理论(BChPT)作为低能量子色动力学(QCD)的有效场论,在我们理解非扰动强相互作用现象中一直发挥着并将继续发挥重要作用。在过去的二十年中,受晶格QCD模拟的飞速发展和研究低能QCD的陌生领域的新实验活动的启发,人们为开发全协变BChPT并在所有情况下测试其有效性做出了许多努力。 。这些新的努力不仅加深了我们对一些长期存在的问题(如功率计数中断问题和收敛性问题)的理解,而且还产生了可以放心使用的理论工具来做出可靠的预测。尤其是,已显示出明显的协变BChPT补充了质壳扩展(EOMS)重归一化方案,可以满足所有分析性和对称性约束,并且与非相对论和红外对等体相比,收敛更快。在本文中,我们简要介绍了全协变BChPT及其在u,d和s三味领域的最新应用。

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