QCD Thermodynamics and Magnetization in Nonzero Magnetic Field

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Date

2016

Journal Title

Journal ISSN

Volume Title

Type

Article

Publisher

HINDAWI LTD

Series Info

ADVANCES IN HIGH ENERGY PHYSICS;

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Abstract

In nonzero magnetic field, the magnetic properties and thermodynamics of the quantum-chromodynamic (QCD) matter are studied in the hadron resonance gas and the Polyakov linear-sigma models and compared with recent lattice calculations. Both models are fairly suited to describe the degrees of freedomin the hadronic phase. The partonic ones are only accessible by the second model. It is found that the QCD matter has paramagnetic properties, which monotonically depend on the temperature and are not affected by the hadron-quark phase transition. Furthermore, raising the magnetic field strength increases the thermodynamic quantities, especially in the hadronic phase, but reduces the critical temperature, that is, inverse magnetic catalysis.

Description

Accession Number: WOS:000374486900001

Keywords

University of THERMAL-PROPERTIES, PHASE-DIAGRAM, LATTICE QCD, MODEL, QUARKS

Citation

Cited References in Web of Science Core Collection: 47