论颜色限制与限制的区别

J. Greensite, Kazue Matsuyama
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引用次数: 1

摘要

色约束(“C约束”)的性质,意味着所有的渐近粒子态都是色中性的,不仅在QCD中成立,而且在深入希格斯体系的测量-希格斯理论中也成立。在这次演讲中,我们描述了一个新的和更强的约束准则,电荷分离约束或“S$_c$约束”,这是威尔逊面积定律准则的扩展,用于测量+物质理论。我们将证明在测量-希格斯理论的相平面中存在S$_c$和C约束之间的过渡,并且我们还将解释在测量-希格斯理论的希格斯相中实际上打破了什么对称性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the distinction between color confinement, and confinement
The property of color confinement ("C confinement"), meaning that all asymptotic particle states are color neutral, holds not only in QCD, but also in gauge-Higgs theories deep in the Higgs regime. In this talk we describe a new and stronger confinement criterion, separation-of-charge confinement or "S$_c$ confinement," which is an extension of the Wilson area-law criterion to gauge + matter theories. We will show that there is a transition between S$_c$ and C confinement in the phase plane of gauge-Higgs theories, and we will also explain what symmetry is actually broken in the Higgs phase of a gauge-Higgs theory.
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