Nonextensive effects on QCD chiral phase diagram and baryon-number fluctuations within Polyakov-Nambu-Jona-Lasinio model
arXiv:2302.12010 · doi:10.1088/1674-1137/acbf2a
Abstract
In this paper, a version of the Polyakov-Nambu-Jona-Lasinio (PNJL) model based on nonextensive statistical mechanics is presented. This new statistics summarizes all possible factors that violate the assumptions of the Boltzmann-Gibbs (BG) statistics to a dimensionless nonextensivity parameter , and when tends to 1, it returns to the BG case. Within the nonextensive PNJL model, we found that as increases, the location of the critical end point (CEP) exhibits non-monotonic behavior. That is, for , CEP moves in the direction of lower temperature and larger quark chemical potential. But for , CEP turns to move in the direction of lower temperature and lower quark chemical potential. In addition, we studied the moments of the net-baryon number distribution, that is, the variance (), skewness (S), and kurtosis (). Our results are generally consistent with the latest experimental data, especially for , when is set to .
References in corpus (9)
- Measurements of Strange Particle Production in Collisions at = 200 GeV
- Description of High-Energy pp Collisions Using Tsallis Thermodynamics: Transverse Momentum and Rapidity Distributions
- Nonextensive statistical effects in protoneutron stars
- The chiral phase transition with a chiral chemical potential in the framework of Dyson-Schwinger equations
- The Critical End Point of Quantum Chromodynamics Detected by Chirally Imbalanced Quark Matter
- Thermodynamic properties and transport coefficients of QCD matter within the non-extensive Polyakov-Nambu-Jona-Lasinio model
- Consistent nonadditive approach and nuclear equation of state
- Chiral phase transition in linear sigma model with non-extensive statistical mechanics
- Moments of multiplicity distributions using Tsallis statistics in leptonic and hadronic collisions