arXiv:2206.05773·v4·Nuclear Experiment
Scaling Properties of the Correlator: Constraints on Background and CME-Sensitive Charge Separation in Heavy-Ion Collisions
Roy A. Lacey (1) · Niseem Magdy (2) ((1) Depts. of Chemistry and Physics, Stony Brook University, Stony Brook, New York 11794, USA (2) Dept. of Physics, Texas Southern University, Houston, TX 77004, USA)
Abstract
The scaling properties of the correlator are used to investigate charge separation associated with the chiral magnetic effect (CME) in +Au, +Au, Ru+Ru, Zr+Zr, and Au+Au collisions at ~GeV, and in +Pb and Pb+Pb collisions at and ~TeV. Anomalous Viscous Fluid Dynamics (AVFD) calculations provide complementary benchmarks for background and signal+background behavior. Scaling by the elliptic-flow coefficient reduces the leading flow-coupled background dependence, while the resulting exhibits a common approximate scaling behavior for +Au, +Au, +Pb, and Pb+Pb collisions, consistent with multiplicity dilution of background-driven charge correlations across markedly different collision systems and environments. In contrast, Ru+Ru, Zr+Zr, and Au+Au collisions exhibit systematic positive deviations from their respective background-scaling trends. These scaling violations are qualitatively similar to those generated by AVFD calculations with an input CME signal and, relative to the experimentally constrained background scaling, provide evidence for a CME contribution to the measured charge separation. The inferred CME fraction is approximately for mid-central Au+Au collisions and roughly a factor of two smaller for Ru+Ru and Zr+Zr, whose values are consistent within uncertainties. The inferred CME fractions reduce the expected Ru+Ru--Zr+Zr difference to only in the total charge-separation signal, explaining its limited experimental sensitivity. These results demonstrate that scaling violations relative to an experimentally constrained background provide a quantitative strategy for isolating a CME contribution to charge separation in heavy-ion collisions.
Comments: 5 figures, published version. arXiv admin note: text overlap with arXiv:2203.10029