Correlations of flow harmonics in 2.76A TeV Pb--Pb collisions

Abstract

Using the event-by-event viscous hydrodynamics VISH2+1 with MC-Glauber, MC-KLN, and AMPT initial conditions, we investigate the correlations of flow harmonics, including the symmetric cumulants SCv(m, n), the normalized symmetric cumulants NSC(m, n), and the Pearson correlation coefficients C(vm2, vn2) in 2.76A TeV Pb--Pb collisions. We find SCv(m, n) is sensitive to both initial conditions and the specific shear viscosity η/s. A comparison with the recent ALICE data show that our hydrodynamic calculations can qualitatively describe the data of SCv(3, 2) and SCv(4, 2) for various initial conditions, which demonstrate that v2, v4 are correlated and v2, v3 are anti-correlated. Meanwhile, the predicted symmetric cumulants SCv(5, 2), SCv(5, 3), and SCv(4, 3) reveal that v2 and v5, v3 and v5 are correlated, v3 and v4 are anti-correlated in most centrality classes. We also find NSCv(3, 2) and C(v32, v22), which are insensitive to η/s, are mainly determined by corresponding NSC(3, 2) and C(32, 22) correlators from the initial state. In contrast, other NSCv(m, n) and C(vm2, vn2) correlators are influenced by both initial conditions and η/s, which illustrates the non-linear mode couplings in higher flow harmonics with n ≥ 4.

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