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- W2468134052 abstract "The effects of event-by-event fluctuations in the initial geometry of colliding nuclei are important in the analysis of final flow observables in relativistic heavy-ion collisions. We use hydrodynamic simulations to study the amplitude correlations between different orders of event-by-event fluctuating anisotropic flow harmonics. While the general trends seen in the experimental data are qualitatively reproduced by the model, deviations in detail, in particular for peripheral collisions, point to the need for more elaborate future calculations with a hybrid approach that describes the late hadronic stage of the evolution microscopically. It is demonstrated explicitly that the observed anticorrelation between ${v}_{2}$ and ${v}_{3}$ is the consequence of approximately linear hydrodynamic response to a similar anticorrelation of the corresponding initial eccentricities ${ensuremath{epsilon}}_{2}$ and ${ensuremath{epsilon}}_{3}$. For $nphantom{rule{0.16em}{0ex}}>phantom{rule{0.16em}{0ex}}3$, the hydrodynamic correlations between ${v}_{2,3}$ and ${v}_{n}$ deviate from the rescaled correlations among the corresponding initial eccentricities, demonstrating a nonlinear mode coupling effect in higher-order flows." @default.
- W2468134052 created "2016-07-22" @default.
- W2468134052 creator A5035994817 @default.
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- W2468134052 date "2016-08-17" @default.
- W2468134052 modified "2023-09-27" @default.
- W2468134052 title "Hydrodynamic flow amplitude correlations in event-by-event fluctuating heavy-ion collisions" @default.
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- W2468134052 doi "https://doi.org/10.1103/physrevc.94.024910" @default.
- W2468134052 hasPublicationYear "2016" @default.
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