Papers
Topics
Authors
Recent
Search
2000 character limit reached

Charge-Dependent Directed Flow in Symmetric Nuclear Collisions

Published 30 Mar 2026 in hep-ph and nucl-th | (2603.28742v1)

Abstract: The directed flow (v1v_1) of identified hadrons (π<sup>±,</sup>K<sup>±,</sup>p,pˉ,φ,Λπ<sup>{\pm},</sup> K<sup>{\pm},</sup> p, \bar{p}, φ, Λ, and Λˉ\barΛ) is studied in symmetric nuclear collisions (O+O, Cu+Cu, Ru+Ru, Au+Au, and U+U) at sNN=200\sqrt{s_{NN}} = 200 GeV using the string-melting version of a multiphase transport model with improved quark coalescence. The mid-rapidity v1v_1-slope (dv1/dydv_1/dy) and its charge-dependent splitting (Δdv1/dyΔdv_1/dy) between particles and anti-particles are investigated as a function of nuclear mass number (AA) and collision centrality in both low-pTp_\mathrm{T} (0.2-2.0 GeV/cc) and high-pTp_\mathrm{T} (2.0-5.0 GeV/cc) regions. At low-pTp_\mathrm{T}, the v1v_1-slope shows weak system-size dependence, while at high-pTp_\mathrm{T} strong system-size dependence is found and it becomes negative with nuclear mass number, reflecting the hard-soft asymmetry in particle production. The charge-dependent splitting Δdv1/dyΔdv_1/dy reveals a striking baryon-meson dichotomy: baryon pairs (ppˉp-\bar{p} and ΛΛˉΛ-\barΛ) exhibit significant splitting that grows with system size, whereas meson pairs (π<sup>+π<sup>π<sup>+-π<sup>- and K<sup>+K<sup>K<sup>+-K<sup>-) show minimal splitting. The effect of final state hadronic interactions on the v1v_1-slope is found to be negligible confirming that it is primarily generated during the partonic phase and coalescence process. A comparison of the AMPT results with measurements from the STAR experiment at RHIC in Au+Au collisions establish the transported quark contribution as a baseline for the observed charge-dependent v1v_1 splitting, on top of which electromagnetic field effects must be considered.

Authors (2)

Summary

No one has generated a summary of this paper yet.

Paper to Video (Beta)

No one has generated a video about this paper yet.

Whiteboard

No one has generated a whiteboard explanation for this paper yet.

Open Problems

We haven't generated a list of open problems mentioned in this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.

Tweets

Sign up for free to view the 1 tweet with 0 likes about this paper.