2013/02/08 by P. K. Srivastava, C. P. Singh, Srivastava, P. K. +1
Physics and Astronomy · #Baryon #Condensed matter physics #Critical point (mathematics) #FOS: Physical sciences #Hadron #High Energy Physics - Phenomenology (hep-ph) #High-Energy Particle Collisions Research #Lattice (music) #Lattice QCD #Nuclear physics #Particle physics #Phase (matter) #Phase boundary #Phase diagram #Phase transition #Physics #Plasma #QCD matter #Quantum Chromodynamics and Particle Interactions #Quantum chromodynamics #Quantum mechanics #Quark–gluon plasma #Quasiparticle #Theoretical and Computational Physics #hep-ph
paper · pdf · doi:10.48550/arxiv.1302.1991
5 pages, 4 figures, to be published in proceedings of QGP MEET 2012 held at VECC, Kolkata, INDIA
arxiv created 2013/02/08 · openalex publication_date 2013/02/08 · arxiv updated 2018/04/03 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05
Search of a proper and realistic equations of state (EOS) for strongly interacting matter used in the study of QCD phase diagram still appears as a challenging task. Recently, we have constructed a hybrid model description for the quark gluon plasma (QGP) as well as hadron gas (HG) phases where we use a new excluded-volume model for HG and a thermodynamically-consistent quasiparticle model for the QGP phase. We attempt to use them to get a QCD phase boundary and a critical point. We test our hybrid model by reproducing the entire lattice QCD data for strongly interacting matter at zero baryon chemical potential (μB)and predict the results at finite μB and T.