17–29 Aug 2017
Europe/Athens timezone
CONFERENCE PHOTO: https://indico.cern.ch/event/559774/overview#preview:2369137

Support / Helpdesk

Session

B Heavy Ion Physics Session

19 Aug 2017, 18:00

Presentation materials

There are no materials yet.

  1. Prof. Sergei Voloshin (Wayne State University)
    19/08/2017, 18:00
    Talk

    Ultrarelativistic nuclear collisions provide unique possibility to
    study the matter at extreme conditions not available in any other
    laboratory settings. These include highest temperature and energy
    density, strongest electro-magnetic fields, lowest viscosity over
    entropy density (ideal liquid) and, what is the main theme of this
    presentation, the highest vorticity, originating in the large...

    Go to contribution page
  2. Torsten Dahms (Technische Universitaet Muenchen (DE))
    21/08/2017, 12:30
    B Heavy Ion Collisions and Critical Phenomena
    Talk
  3. Dr Jaroslav Bielcik (Czech Technical University (CZ))
    21/08/2017, 13:00
    B Heavy Ion Collisions and Critical Phenomena
    Talk

    The STAR experiment has produced convincing evidence that strongly
    interacting partonic matter, Quark Gluon Plasma (QGP), is created in the
    central collisions of heavy ions. Among the probes used experimentally
    to study the QGP properties, the hard probes: jets and heavy flavor
    quarks are unique since they are dominantly produced at the early stages
    of the collision and subsequently...

    Go to contribution page
  4. Peter Senger (GSI Darmstadt)
    23/08/2017, 12:30
    B Heavy Ion Collisions and Critical Phenomena
    Talk

    The Compressed Baryonic Matter (CBM) experiment will be one of the major scientific pillars of the future Facility for Antiproton and Ion Research (FAIR) in Darmstadt. The goal of the CBM research program is to explore the QCD phase diagram in the region of high baryon densities using high-energy nucleus-nucleus collisions. This includes the study of the equation-of-state of nuclear matter at...

    Go to contribution page
  5. Prof. Vladimir Kekelidze (Joint Inst. for Nuclear Research (RU))
    23/08/2017, 13:00
    B Heavy Ion Collisions and Critical Phenomena
    Talk

    The project NICA (Nuclotron-based Ion Collider fAcility) is under realization at the Joint Institute for Nuclear Research. The main goals are to study hot and dense baryonic matter at the extreme conditions and to investigate nucleon spin structure. The plan of NICA accelerator block development include an upgrade of existing superconducting (SC) synchrotron Nuclotron, construction of new...

    Go to contribution page
  6. You Zhou (Niels Bohr Institute (DK))
    23/08/2017, 18:00
    Talk

    Anisotropic flow is one of the key observables used to probe the properties and evolution of the hot and dense matter produced in heavy-ion collisions. It was recently realized that event-by-event initial geometry fluctuations in heavy-ion collisions lead to a new type of correlation between different order anisotropic flow, which has unique sensitivity to initial conditions and shear...

    Go to contribution page
  7. Prof. Mariusz Przybycien (AGH University of Science and Technology)
    25/08/2017, 14:30
    B Heavy Ion Collisions and Critical Phenomena
    Talk

    The ATLAS experiment at the Large Hadron Collider has undertaken a broad physics program to probe and characterize the hot nuclear matter created in relativistic lead-lead collisions. This talk presents recent results on production of jet, electroweak bosons and quarkonium, electromagnetic processes in ultra-peripheral collisions, and bulk particle collectivity from Pb+Pb and p+Pb collisions.

    Go to contribution page
  8. Emilie Maurice (Universite de Paris-Sud 11 (FR))
    25/08/2017, 14:55
    B Heavy Ion Collisions and Critical Phenomena
    Talk

    Heavy Ion Physics (LHCb)

    Go to contribution page
  9. Timothy Rinn (Iowa State University)
    25/08/2017, 15:15
    B Heavy Ion Collisions and Critical Phenomena
    Talk

    Heavy flavor quarks are a particularly good tool to probe nuclear collisions at RHIC energies, as they are produced dominantly through the initial parton-parton collision rather than during thermalization. This causes them to experience the full evolution of the collision system. PHENIX has produced several measurements of both bottom and charm quarks through their decays, providing insight to...

    Go to contribution page
Building timetable...