Magnetic effects in heavy-ion collisions at intermediate energies
arXiv:1107.3192 · doi:10.1103/PhysRevC.84.064605
Abstract
The time-evolution and space-distribution of internal electromagnetic fields in heavy-ion reactions at beam energies between 200 and 2000 MeV/nucleon are studied within an Isospin-dependent Boltzmann-Uhling-Uhlenbeck transport model IBUU11. While the magnetic field can reach about G which is significantly higher than the estimated surface magnetic field ( G) of magnetars, it has almost no effect on nucleon observables as the Lorentz force is normally much weaker than the nuclear force. Very interestingly, however, the magnetic field generated by the projectile-like (target-like) spectator has a strong focusing/diverging effect on positive/negative pions at forward (backward) rapidities. Consequently, the differential ratio as a function of rapidity is significantly altered by the magnetic field while the total multiplicities of both positive and negative pions remain about the same. At beam energies above about 1 GeV/nucleon, while the integrated ratio of total to multiplicities is not, the differential ratio is sensitive to the density dependence of nuclear symmetry energy . Our findings suggest that magnetic effects should be carefully considered in future studies of using the differential ratio as a probe of the at supra-saturation densities.
12 pages including 8 figures and 1 table
References in corpus (10)
- Electromagnetic field evolution in relativistic heavy-ion collisions
- Charge separation induced by P-odd bubbles in QCD matter
- Transverse momentum analysis of collective motion in relativistic nuclear collisions
- Chiral Magnetic Wave
- Systematics of pion emission in heavy ion collisions in the 1A GeV regime
- Testing the Chiral Magnetic Effect with Central U+U collisions
- Stellar matter with a strong magnetic field within density-dependent relativistic models
- Warm and dense stellar matter under strong magnetic fields
- An improved single particle potential for transport model simulations of nuclear reactions induced by rare isotope beams
- In-medium effects on particle production in heavy ion collisions
Cited by in corpus (48)
- Event-by-event generation of electromagnetic fields in heavy-ion collisions
- The Chiral Magnetic Effect and Anomaly-Induced Transport
- Electromagnetic fields and anomalous transports in heavy-ion collisions --- A pedagogical review
- Azimuthally fluctuating magnetic field and its impacts on observables in heavy-ion collisions
- Novel quantum phenomena induced by strong magnetic fields in heavy-ion collisions
- Anomalous chiral transports and spin polarization in heavy-ion collisions
- Magnetic Field Effect on Charmonium Production in High Energy Nuclear Collisions
- The QCD Critical End Point Under Strong Magnetic Fields
- Quark-gluon plasma in an external magnetic field
- Neutral meson properties in hot and magnetized quark matter: a new magnetic field independent regularization scheme applied to NJL-type model
- Heavy meson spectroscopy under strong magnetic field
- Collective flows of light particles in the Au+Au collision at intermediate energies
- A review of quarkonia under strong magnetic fields
- Magnetic field in expanding quark-gluon plasma
- Symmetry potential of resonance and its effects on the ratio in heavy-ion collisions near the pion production threshold
- Influence of neutron-skin thickness on ratio in Pb+Pb collisions
- Electromagnetic fields from the extended Kharzeev-McLerran-Warringa model in relativistic heavy-ion collisions
- Electromagnetic fields in small systems from a multiphase transport model
- Charge diffusion in relativistic resistive second-order dissipative magnetohydrodynamics
- Event-by-event background in estimates of the chiral magnetic effect
- Electromagnetic field from asymmetric to symmetric heavy ion collision at 200 GeV/c
- Dense nuclear matter and symmetry energy in strong magnetic fields
- Free spectator nucleons in ultracentral relativistic heavy-ion collisions as a probe of neutron skin
- Exploring Dense and Cold QCD in Magnetic Fields
- Speed of Sound for Hadronic and Quark Phases in a Magnetic Field
- Hadronic Paschen-Back effect
- The effect of internal magnetic field on collective flow in heavy ion collisions at intermediate energies
- Chiral vortices and pseudoscalar condensation due to rotation
- Examination of an isospin-dependent single-nucleon momentum distribution for the isospin-asymmetric nuclear matter in heavy-ion collisions
- Nucleon and isobar in a strong magnetic field
- Quarkonium radiative decays from the hadronic Paschen-Back effect
- Electro-magnetic field fluctuation and its correlation with the participant plane in Au+Au and isobaric collisions at GeV
- Effects of retarded electrical fields on observables sensitive to the high-density behavior of nuclear symmetry energy in heavy-ion collisions at intermediate energies
- Quantum diffusion of electromagnetic fields of ultrarelativistic spin-half particles
- Estimation of electric field in intermediate-energy heavy-ion collisions
- Survival probabilities of charmonia as a clue to measure transient magnetic fields
- Magnetic Field Effect in the Fine-Structure Constant and Electron Dynamical Mass
- Beam energy dependence of the relativistic retardation effects of electrical fields on the ratio in heavy-ion collisions
- Photon radiation by relatively slowly rotating fermions in magnetic field
- The impact of domain walls on the chiral magnetic effect in hot QCD matter
- Magnetic field effects in peripheral heavy-ion collisions around 1 GeV/nucleon
- Magneto-rotational dissociation of heavy hadrons in Relativistic Heavy-Ion Collisions
- Dynamical and statistical description of multifragmentation in heavy-ion collisions
- Necessity of selfconsistent calculations for the electromagnetic field in probing the nuclear symmetry energy using pion observables in heavy-ion collisions
- Elimination of influence of neutron-skin size difference of initial colliding nuclei in Pb+Pb collisions
- Continuous evolution of electromagnetic field in heavy-ion collisions
- Effects of an induced electric field on π^{-}/π^{+} ratio in heavy-ion collisions
- Transport Model Comparison Studies of Intermediate-Energy Heavy-Ion Collisions