3 research outputs found

    Evidence for Hydrodynamic Evolution in Proton-Proton Scattering at LHC Energies

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    In pppp scattering at LHC energies, large numbers of elementary scatterings will contribute significantly, and the corresponding high multiplicity events will be of particular interest. Elementary scatterings are parton ladders, identified with color flux-tubes. In high multiplicity events, many of these flux tubes are produced in the same space region, creating high energy densities. We argue that there are good reasons to employ the successful procedure used for heavy ion collisions: matter is assumed to thermalizes quickly, such that the energy from the flux-tubes can be taken as initial condition for a hydrodynamic expansion. This scenario gets spectacular support from very recent results on Bose-Einstein correlations in pppp scattering at 900 GeV at LHC.Comment: 11 pages, 20 figure

    Formation time dependence of femtoscopic ππ\pi \pi correlations in p+p collisions at sNN\sqrt{s_{NN}}=7 TeV

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    We investigate femtoscopic ππ\pi \pi correlations using the UrQMD approach combined with a correlation afterburner. The dependence of ππ\pi \pi correlations on the charged particle multiplicity and formation time in p+p collisions at sNN\sqrt{s_{NN}}= 7 TeV is explored and compared to present ALICE data. The data allows to constrain the formation time in the string fragmentation to τf≤0.8\tau_f \leq 0.8 fm/c.Comment: 9 pages, 2 figure

    Flow in heavy-ion collisions - Theory Perspective

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    I review recent developments in the field of relativistic hydrodynamics and its application to the bulk dynamics in heavy-ion collisions at the Relativistic Heavy- Ion Collider (RHIC) and the Large Hadron Collider (LHC). In particular, I report on progress in going beyond second order relativistic viscous hydrodynamics for conformal fluids, including temperature dependent shear viscosity to entropy density ratios, as well as coupling hydrodynamic calculations to microscopic hadronic rescattering models. I describe event-by-event hydrodynamic simulations and their ability to compute higher harmonic flow coefficients. Combined comparisons of all harmonics to recent experimental data from both RHIC and LHC will potentially allow to determine the desired details of the initial state and the medium properties of the quark-gluon plasma produced in heavy-ion collisions.Comment: 8 pages, Invited plenary talk at the 22nd International Conference on Ultrarelativistic Nucleus-Nucleus Collisions (Quark Matter 2011), May 23-28 2011, Annecy, Franc
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