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Scaling behavior of chiral phase transition in two-flavor QCD with improved Wilson quarks at finite density

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arxiv 1101.5582 v1 pith:D2RBGNOF submitted 2011-01-28 hep-lat

Scaling behavior of chiral phase transition in two-flavor QCD with improved Wilson quarks at finite density

classification hep-lat
keywords scalingchiralphasebehaviorchemicaldensityorderparameter
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study scaling behavior of a chiral order parameter performing a simulation of two-flavor QCD with improved Wilson quarks. It has been shown that the scaling behavior of the chiral order parameter defined by a Ward-Takahashi identity agrees with the scaling function of the three-dimensional O(4) spin model at zero chemical potential. We extend the scaling study to finite density QCD. Calculating derivatives of the chiral order parameter with respect to the chemical potential in two-flavor QCD, the scaling property of chiral phase transition is discussed in the low density region. We moreover calculate the curvature of the phase boundary of the chirl phase transition in the temperature and chemical potential plane assuming the O(4) scaling relation.

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