Roberge-Weiss transitions at different center symmetry breaking patterns in a -QCD model
arXiv:1812.01373 · doi:10.1103/PhysRevD.100.074026
Abstract
We study how the Roberge-Weiss (RW) transition depends on the pattern of center symmetry breaking using a -QCD model. We adopt flavor-dependent quark imaginary chemical potentials, namely with . The RW periodicity is guaranteed and the center symmetry of -QCD is explicitly broken when or/and quark masses are non-degenerate. For and , the RW transition occurs at , which becomes stronger with decrease of . When , the turns into for , but keeps for ; in both cases, the RW transitions get stronger with the mass mismatch. For other cases, the 's are not integral multiples of . We find that the RW transition is more sensitive to the deviation of from one compared to the mass non-degeneracy and thus the strength of the traditional RW transition with is the strongest. The nature of RW endpoints and its implications to deconfinement transition are investigated.
12 pages, 12 figures; rewritten version; some wrong conclusions and interpretations corrected; conferences added
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