English

Flow harmonics from self-consistent particlization of a viscous fluid

Nuclear Theory 2017-11-01 v2

Abstract

The quantitative extraction of quark-gluon plasma (QGP) properties from heavy-ion data, such as its specific shear viscosity η/s\eta /s, typically requires comparison to viscous hydrodynamic or "hybrid" hydrodynamics+transport simulations. In either case, one has to convert the fluid to hadrons, yet without additional theory input the conversion is ambiguous for dissipative fluids. Here, shear viscous phase-space corrections calculated using linearized transport theory are applied in Cooper-Frye freezeout to quantify the effects on anisotropic flow coefficients vn(pT)v_n(p_T) at both RHIC and LHC energies. Expanding upon our previous flow harmonics studies [1,2], we calculate pion and proton v2(pT)v_2(p_T), v4(pT)v_4(p_T), and v6(pT)v_6(p_T). Unlike in Ref. [1], we incorporate a hadron gas that is chemically frozen below a temperature of 175 MeV, and use hypersurfaces from realistic viscous hydrodynamic simulations. With additive quark model cross sections and relative phase-space corrections with p3/2p^{3/2} momentum dependence, rather than the quadratic Grad form, we find at moderately high transverse momentum noticeably higher v4(pT)v_4(p_T) and v6(pT)v_6(p_T) for protons than for pions. In addition, the value of η/s\eta /s deduced from elliptic flow data differs by nearly 50\% from the value extracted using the naive "democratic Grad" form of freeze-out distributions. To facilitate the use of the self-consistent viscous corrections calculated here in hydrodynamic and hybrid calculations, we also present convenient parameterizations of the corrections for the various hadron species (cf. Table I).

Keywords

Cite

@article{arxiv.1611.09185,
  title  = {Flow harmonics from self-consistent particlization of a viscous fluid},
  author = {Zack Wolff and Denes Molnar},
  journal= {arXiv preprint arXiv:1611.09185},
  year   = {2017}
}

Comments

Added Figure 4, subsection III E, 4 References [29-32], and one footnote [34]. Also added an outline of the paper at the end of the introduction, some discussion of Eq. (1), and fixed the redundant alpha notation in Sec III D to kappa. 12 pages, 11 Figures, 1 Table

R2 v1 2026-06-22T17:06:37.928Z