Consistent nonadditive approach and nuclear equation of state
arXiv:1405.7274 · doi:10.1088/0954-3899/41/5/055105
Abstract
By using a -calculus, the Walecka many-body field theory was studied in the context of the Tsallis framework. The most important aspect of the application of the -calculus to the nonadditive formulation of QHD-I is that it naturally emerges as a thermodynamically consistent theory.
References in corpus (7)
- A possible deformed algebra and calculus inspired in nonextensive thermostatistics
- Measurements of Strange Particle Production in Collisions at = 200 GeV
- Nonextensive statistical effects in protoneutron stars
- Nonextensive statistical effects in the quark-gluon plasma formation at relativistic heavy-ion collisions energies
- Nonextensive effects on the relativistic nuclear equation of state
- Nonextensive statistical effects and strangeness production in hot and dense nuclear matter
- On the Density Dependent Nuclear Matter Compressibility
Cited by in corpus (3)
- Systematic Analysis of the Non-extensive Statistical Approach in High Energy Particle Collisions - Experiment vs. Theory
- Nonextensive effects on QCD chiral phase diagram and baryon-number fluctuations within Polyakov-Nambu-Jona-Lasinio model
- Scaling of soft QGP signatures in relativistic lead, xenon and oxygen collisions in EPOS4