Anisotropy of magnetized quark matter
- 1. Department of Physics, Indian Institute of Technology Indore, Simrol, Indore 453552, India
- 2. Institute of Nuclear Physics, University of Frankfurt, Germany
Description
Strong transient magnetic fields are generated in noncentral relativistic heavy-ion collisions. These fields induce anisotropy within the strongly interacting medium that, in principle, can affect the thermodynamic properties of the medium. We use the Polyakov loop extended Nambu Jona-Lasinio model to study the quark matter subjected to an external magnetic field at vanishing baryon chemical potential (). We have estimated the degree of anisotropy in the speed of sound and isothermal compressibility within the magnetized quark matter as a function of temperature (T) and magnetic field (eB). This study helps us to understand the extent of directionality generated in the initial stages of noncentral collisions while giving us useful information about the system.
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10.1103_PhysRevD.109.074012.pdf
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Additional details
Identifiers
- DOI
- 10.1103/PhysRevD.109.074012;
- arXiv
- arXiv:2310.02711;
- Crossref Funder ID
- 10.13039/501100001502; 10.13039/501100001409;
Publishing Information
- Journal Title
- Physical Review D
- Journal Volume
- 109
- Journal Issue
- 7
- Journal Page Range
- 12 pgs.
- ISSN
- 1089-4918
INIS
- Country of Publication
- United States
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- Subject category
- S72: PHYSICS OF ELEMENTARY PARTICLES AND FIELDS; S73: NUCLEAR PHYSICS AND RADIATION PHYSICS;
- Descriptors DEI
- ANISOTROPY; ANTIQUARKS; COLLISIONS; COMPRESSIBILITY; HEAVY ION REACTIONS; MAGNETIC FIELDS; QUARK CONDENSATION; QUARK MATTER; QUARK MODEL; QUARKS; SOUND WAVES; STRONG INTERACTIONS; TEMPERATURE DEPENDENCE; THERMODYNAMIC MODEL; THERMODYNAMIC PROPERTIES; THERMODYNAMICS
- Descriptors DEC
- ANTIPARTICLES; COMPOSITE MODELS; ELEMENTARY PARTICLES; FERMIONS; FUNDAMENTAL INTERACTIONS; INTERACTIONS; MATHEMATICAL MODELS; MATTER; MECHANICAL PROPERTIES; NUCLEAR REACTIONS; PARTICLE MODELS; PHYSICAL PROPERTIES; QUARKS; STATISTICAL MODELS
Optional Information
- Contract/Grant/Project number
- SR/MF/PS-02/2021-IITI(E-37123)
- Notes
- Contact Email: Corresponding author: Raghunath.Sahoo@cern.ch; Record automatically processed
- Funding organization
- Department of Atomic Energy, Government of India; Department of Science and Technology, Ministry of Science and Technology, India