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Plane correlations and hydrodynamic simulations of heavy ion collisions

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arxiv 1312.3689 v2 pith:ASXW6KQE submitted 2013-12-13 nucl-th

classification nucl-th
keywords correlationsplaneresponseeventlangleleftlinearlowest
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abstract

We use a nonlinear response formalism to describe the event plane correlations measured by the ATLAS collaboration. With one exception ($\left\langle \cos(2\Psi_2 - 6\Psi_3 + 4 \Psi_4) \right\rangle$), the event plane correlations are qualitatively reproduced by considering the linear and quadratic response to the lowest cumulants. For the lowest harmonics such as $\left\langle \cos(2\Psi_2+3\Psi_3 - 5\Psi_5) \right\rangle$, the correlations are quantitatively reproduced, even when the naive Glauber model prediction has the wrong sign relative to experiment. The quantitative agreement for the higher plane correlations (especially those involving $\Psi_6$) is not as good. The centrality dependence of the correlations is naturally explained as an average of the linear and quadratic response.

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Cited by 1 Pith paper

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  1. Nonlinear collective flow reveals the breakdown of quadrupole--hexadecapole scaling in heavy ion collisions

    nucl-th 2026-07 conditional novelty 5.0 of 10

    The nonlinear flow coefficient ξ6,222 in simulated U+U collisions separates the four (β2, β4) nuclear topology classes, making the sign of the hexadecapole deformation β4 experimentally accessible.

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