A holographic model for QCD in the Veneziano limit at finite temperature and density

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Abstract

A holographic model of QCD in the limit of large number of colors, Nc, and massless fermion flavors, Nf , but constant ratio xf = Nf /Nc is analyzed at finite temperature and chemical potential. The five dimensional gravity model contains three bulk fields: a scalar dilaton sourcing TrF2, a scalar tachyon dual to qq and a 4-vector dual to the baryon current qγμq. The main result is the μ, T phase diagram of the holographic theory. A first order deconfining transition along Th (μ) and a chiral transition at Th (μ) > Tf (μ) are found. The chiral transition is of second order for small μ and becomes of first order at larger μ. The two regimes are separated by a tricritical point. The dependence of thermodynamical quantities including the speed of sound and susceptibilities on the chemical potential and temperature is computed. A new quantum critical regime is found at zero temperature and finite chemical potential. It is controlled by an AdS f × R3 geometry and displays semi-local criticality. © The Authors.

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Alho, T., Järvinen, M., Kajantie, K., Kiritsis, E., Rosen, C., & Tuominen, K. (2014). A holographic model for QCD in the Veneziano limit at finite temperature and density. Journal of High Energy Physics, 2014(4). https://doi.org/10.1007/JHEP04(2014)124

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