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Hadron-quark phase transition in asymmetric matter with boson condensation

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arxiv 1009.3596 v1 pith:CKYLRG2Q submitted 2010-09-19 nucl-th hep-phhep-th

Hadron-quark phase transition in asymmetric matter with boson condensation

classification nucl-th hep-phhep-th
keywords phasetransitionmatterasymmetricbosoncondensationdensityhadron-quark
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In the present work we study the hadron-quark phase transition with boson condensation in asymmetric matter by investigating the binodal surface and extending it to finite temperature in order to mimic the QCD phase diagram. We consider a system with two conserved charges (isospin and baryon densities) using the Gibbs' criteria for phase equilibrium. In order to obtain these conditions we use two different models for the two possible phases, namely the non-linear Walecka model (NLWM) for the hadron matter (also including hyperons) and the MIT bag model for the quark phase. It is shown that the phase transition is very sensitive to the density dependence of the equation of state and the symmetry energy. For isospin asymmetry of 0.2 and a mixed phase with a fraction of 20% of quarks, a transition density in the interval 2 rho_0 to 4 rho_0 was obtained for temperatures 30 < T < 65 MeV.

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