Chiral Vortical and Magnetic Effects in Anomalous Hydrodynamics
arXiv:1704.05375 · doi:10.1016/j.nuclphysa.2017.06.039
Abstract
We employ a 3+1D anomalous hydrodynamics with initial condition generated by HIJING to simulate the chiral vortical effect and the chiral magnetic effect in heavy-ion collisions. This allows us to calculate the charge-dependent two-particle correlations with respect to the reaction plane at different collision energies and centralities. We then compare the computed results with the experimental data and give discussions on the possible background effects.
4 pages, 2 figures, as a contribution to the proceedings for Quark Matter 2017
References in corpus (7)
- The Chiral Magnetic Effect
- Charge separation induced by P-odd bubbles in QCD matter
- Quantum Anomalies in Dense Matter
- Beam-energy dependence of charge separation along the magnetic field in Au+Au collisions at RHIC
- Fluid/gravity model for the chiral magnetic effect
- Do stochastic inhomogeneities affect dark-energy precision measurements?
- Chiral vortaic effect and neutron asymmetries at NICA
Cited by in corpus (7)
- Global Anomalies, Discrete Symmetries, and Hydrodynamic Effective Actions
- New developments in relativistic magnetohydrodynamics
- Spin Hydrodynamic Generation in the Charged Subatomic Swirl
- Numerical Study of the Chiral Separation Effect in Two-Color QCD at Finite Density
- Magnetic Field in the Charged Subatomic Swirl
- Chiral magnetohydrodynamics for heavy-ion collisions
- Order-by-order Anisotropic Transport Coefficients of a Magnetised Fluid: a Chapman-Enskog Approach