Impact of globally spin-aligned vector mesons on the search for the chiral magnetic effect in heavy-ion collisions
arXiv:2212.03056 · doi:10.1016/j.physletb.2023.137777
Abstract
In high-energy heavy-ion collisions, the chiral magnetic effect (CME) is predicted to arise from the interplay between the chirality imbalance of quarks in the nuclear medium and the intense magnetic field, and will cause a charge separation along the magnetic field direction. While the search for the CME is still ongoing in experiments at Relativistic Heavy Ion Collider (RHIC) and the Large Hadron Collider (LHC), the CME-sensitive observables need to be scrutinized to exclude the non-CME contributions. In this work, we examine the influence of globally spin-aligned mesons on the correlator, the correlator, and the signed balance functions, via a toy model and a multiphase transport model (AMPT). The global spin alignment of vector mesons could originate from non-CME mechanisms in heavy-ion collisions, and is characterized by the 00-component of the spin density matrix, . We find that the CME observables show similar dependence on , and could receive a positive (negative) contribution from -decay pions, if the of mesons is larger (smaller) than 1/3. Since pions are the most abundant particles in such collisions, the measurements for mesons become crucial to the interpretation of the CME data.
9 pages, 7 figures
References in corpus (10)
- PYTHIA 6.4 Physics and Manual
- Systematic Measurements of Identified Particle Spectra in pp, d+Au and Au+Au Collisions from STAR
- Observation of charge-dependent azimuthal correlations in pPb collisions and its implication for the search for the chiral magnetic effect
- Global polarization of and hyperons in Au+Au collisions at = 200 GeV
- Chiral magnetic effect reveals the topology of gauge fields in heavy-ion collisions
- Local spin alignment of vector mesons in relativistic heavy-ion collisions
- On the Charge Separation Effect in Relativistic Heavy Ion Collisions
- Improved quark coalescence model for spin alignment and polarization of hadrons
- The effect of hadronic scatterings on the measurement of vector meson spin alignments in heavy-ion collisions
- Helicity polarization in relativistic heavy ion collisions
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- Event Shape Selection Method in Search of the Chiral Magnetic Effect in Heavy-ion Collisions
- Estimate of Background Baseline and Upper Limit on the Chiral Magnetic Effect in Isobar Collisions at GeV at the Relativistic Heavy-Ion Collider
- Search for the chiral magnetic effect through beam energy dependence of charge separation using event shape selection
- Spin alignment of Quarkonia: A Possible Probe of Deconfined QCD matter in Pb+Pb Collisions at TeV