English

Spin alignment of vector mesons by second-order hydrodynamic gradients

Nuclear Theory 2024-03-29 v2 High Energy Physics - Phenomenology

Abstract

Starting with the polarization dependent Wigner function of vector mesons, we derive an expression for the 00-component (ρ00\rho_{00}) of spin density matrix in terms of the second order gradients of the vector meson distribution functions. We further apply a thermal model to analyze the transverse momentum and the azimuthal angle dependence of ρ00\rho_{00} for ϕ\phi and K0K^{*0} mesons resulting from distribution gradients in Au-Au collisions with sNN=130\sqrt{s_{NN}}=130 GeV at mid-rapidity. Our results for the transverse momentum dependence indicate that the deviations of ρ00\rho_{00} from 1/31/3 as the signal for spin alignment are greatly enhanced at large transverse momenta and have a strong centrality dependence while analysis of the azimuthal angle (ϕq\phi_q) dependence suggest that such deviations have a cos(2ϕq)\cos(2\phi_q) structure with opposite sign for ϕ\phi and K0K^{*0}. Our finding may be considered as a baseline for probing spin-alignment mechanisms beyond hydrodynamic gradients.

Keywords

Cite

@article{arxiv.2312.16900,
  title  = {Spin alignment of vector mesons by second-order hydrodynamic gradients},
  author = {Avdhesh Kumar and Philipp Gubler and Di-Lun Yang},
  journal= {arXiv preprint arXiv:2312.16900},
  year   = {2024}
}

Comments

30 pages, 3 figures, minor revisions, journal version

R2 v1 2026-06-28T14:03:31.824Z