矢量优势,一个口味的重子,和QCD域壁从“隐藏”韦斯-祖米诺术语

A. Karasik
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引用次数: 19

摘要

我们进一步探讨了QCD中的矢量介子在各种QCD物体(如畴壁和一味重子)上作为chen - simons场的特殊作用。我们计算了包含矢量介子的广义wess - zuma项对畴壁理论和重子电流的贡献。导致预期的陈-西蒙斯项和正确的重子谱的条件,与矢量介子优势的条件是一致的。这一发现为矢量优势的现象学原理提供了理论解释,并为矢量介子作为陈-西蒙斯场的识别提供了实验证据。通过从一个作用直接推导出chen - simons理论,我们得到了关于QCD畴壁的新结果。一个结论是,作为夸克质量的函数,域壁之间存在一阶相变。我们还讨论了我们的结果在胶子和矢量介子之间的Seiberg对偶性中的应用,并提供了支持对偶性的新证据。
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Vector dominance, one flavored baryons, and QCD domain walls from the "hidden" Wess-Zumino term
We further explore a recent proposal that the vector mesons in QCD have a special role as Chern-Simons fields on various QCD objects such as domain walls and the one flavored baryons. We compute contributions to domain wall theories and to the baryon current coming from a generalized Wess-Zumino term including vector mesons. The conditions that lead to the expected Chern-Simons terms and the correct spectrum of baryons, coincide with the conditions for vector meson dominance. This observation provides a theoretical explanation to the phenomenological principle of vector dominance, as well as an experimental evidence for the identification of vector mesons as the Chern-Simons fields. By deriving the Chern-Simons theories directly from an action, we obtain new results about QCD domain walls. One conclusion is the existence of a first order phase transition between domain walls as a function of the quarks' masses. We also discuss applications of our results to Seiberg duality between gluons and vector mesons and provide new evidence supporting the duality.
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