Impact of Vector-Current Interactions on the QCD Phase Diagram

  • Hell T
  • Kashiwa K
  • Weise W
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Abstract

Using a nonlocal version of the Polyakov-loop-extended Nambu--Jona-Lasinio model, we investi- gate effects of a nonderivative vector-current interaction (relating to the quark-number density) at both real and imaginary chemical potentials. This repulsive vector interaction between quarks has the following impact on the chiral first-order phase transition: at imaginary chemical potential it sharpens the transition at the Roberge-Weiss (RW) end point and moves this critical point toward lower temperatures; at real chemical potential, the critical end point moves on a trajectory towards larger chemical potentials and lower temperatures with increasing vector coupling strength. The conditions are discussed at which the first-order phase transition disappears and turns into a smooth crossover.

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Hell, T., Kashiwa, K., & Weise, W. (2013). Impact of Vector-Current Interactions on the QCD Phase Diagram. Journal of Modern Physics, 04(05), 644–650. https://doi.org/10.4236/jmp.2013.45093

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