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Nearly isentropic flow at sizeable η/s

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arxiv 1803.02072 v4 pith:P4NYPJZQ submitted 2018-03-06 hep-ph hep-exnucl-exnucl-th

Nearly isentropic flow at sizeable η/s

classification hep-ph hep-exnucl-exnucl-th
keywords transportcollisionstheoryazimuthalfluidhadron-nucleusinteractionlinear
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Non-linearities in the harmonic spectra of hadron-nucleus and nucleus-nucleus collisions provide evidence for the dynamical response to azimuthal spatial eccentricities. Here, we demonstrate within the framework of transport theory that even the mildest interaction correction to a picture of free-streaming particle distributions, namely the inclusion of one perturbatively weak interaction ("one-hit dynamics"), will generically give rise to all observed linear and non-linear structures. We further argue that transport theory naturally accounts within the range of its validity for realistic signal sizes of the linear and non-linear response coefficients observed in azimuthal momentum anisotropies with a large mean free path of the order of the system size in peripheral ($\sim 50 \%$ centrality) PbPb or central pPb collisions. The shear viscosity to entropy density ratio $\eta/s$ of such a transport theory is approximately an order of magnitude larger than that of an almost perfect fluid. The phenomenological success of transport simulations thus challenges the perfect fluid paradigm of ultra-relativistic nucleus-nucleus and hadron-nucleus collisions.

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Cited by 2 Pith papers

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  2. Hydrodynamics and Energy Correlators

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    Energy-energy correlators in heavy-ion collisions exhibit classical hydrodynamic scaling from collective flow at large angles within the small-angle regime, collective modes at smaller angles, and light-ray OPE at eve...