A systematic study of magnetic field in Relativistic Heavy-ion Collisions in the RHIC and LHC energy regions
arXiv:1408.5694 · doi:10.1155/2014/193039
Abstract
The features of magnetic field in relativistic heavy-ion collisions are systematically studied by using a modified magnetic field model in this paper. The features of magnetic field distributions in the central point are studied in the RHIC and LHC energy regions. We also predict the feature of magnetic fields at LHC = 900, 2760 and 7000 GeV based on the detailed study at RHIC = 62.4, 130 and 200 GeV. The dependencies of the features of magnetic fields on the collision energies, centralities and collision time are systematically investigated, respectively.
8 pages, 7 figures
References in corpus (6)
- The Chiral Magnetic Effect
- Charge separation induced by P-odd bubbles in QCD matter
- Testing the chiral magnetic and chiral vortical effects in heavy ion collisions
- Testing the Chiral Magnetic Effect with Central U+U collisions
- A new method for the experimental study of topological effects in the quark-gluon plasma
- P and CP Violation and New Thermalization Scenario in Heavy Ion Collisions
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- Elliptic Flow of Particles under the Influence of Electromagnetic Field Evolution in Relativistic Heavy Ion Collision
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