PaperPanorama

arXiv:1804.06848·v3·High Energy Physics — Theory

Vacuum structure of Yang-Mills theory as a function of

Kyle Aitken🇺🇸 · Aleksey Cherman🇺🇸 · Mithat Ünsal🇺🇸

PDFarXivINSPIREDOI

Abstract

It is believed that in Yang-Mills theory observables are -branched functions of the topological angle. This is supposed to be due to the existence of a set of locally-stable candidate vacua, which compete for global stability as a function of . We study the number of vacua, their interpretation, and their stability properties using systematic semiclassical analysis in the context of adiabatic circle compactification on . We find that while observables are indeed N-branched functions of , there are only locally-stable candidate vacua for any given . We point out that the different vacua are distinguished by the expectation values of certain magnetic line operators that carry non-zero GNO charge but zero 't Hooft charge. Finally, we show that in the regime of validity of our analysis YM theory has spinodal points as a function of , and gather evidence for the conjecture that these spinodal points are present even in the limit.

Comments: 33 pages, 6 figures. v3: added references

Citation historyopen in Citation History ↗