Measurement of D meson production in p-Pb collisions with the ALICE detector
arXiv:1511.04380
Abstract
The main goal of the experimental programs on ultra-relativistic heavy ion collisions at the LHC is the production and characterization of the Quark Gluon Plasma (QGP), a phase of nuclear matter in which strongly interacting constituents (quarks and gluons) are deconfined. Heavy quarks are considered effective probes of the properties of the QGP as they are created on a short time scale, with respect to that of the QGP, and subsequently interact with it. Moreover, for a proper assessment of the characteristics of the matter produced in heavy-ion collisions, it is important to disentangle the final state effects due to the formation of a QGP from the initial state effects due to the fact that nuclei are present in the colliding system. Both initial and final state effects may lead to qualitatively similar phenomena in the observables of interest. The measurement of charmed meson production in proton-nucleus collisions allows to assess initial state effects present in nuclear collisions, under the assumption that an extended deconfined medium is not created in this kind of interactions. The nuclear modification factor of mesons in p-Pb collisions () is essential for a complete understanding of the modification of mesons momentum distributions observed in Pb-Pb collisions at = 2.76 TeV, which is interpreted as due to the -quark energy loss in the medium. In addition, some of the results obtained from high-multiplicity p-Pb collisions at LHC, such as the ridge structure in the two-particle correlation function, turned out to be unexpected, and have been interpreted in terms of final state effects such as hydrodynamic flow. These aspects make a study of charmed meson production in p-Pb collisions as a function of the event multiplicity of great interest.
PhD thesis, Universitaâ degli Studi di Torino
References in corpus (11)
- PYTHIA 6.4 Physics and Manual
- Performance of the ALICE Experiment at the CERN LHC
- Determination of nuclear parton distribution functions and their uncertainties at next-to-leading order
- A light-cone wavefunction approach to open heavy flavor dynamics in QCD matter
- Heavy Flavor at the Large Hadron Collider in a Strong Coupling Approach
- Charmed-Meson Fragmentation Functions with Finite-Mass Corrections
- Collisional energy loss of a fast heavy quark in a quark-gluon plasma
- Testing the theory of QGP-induced energy loss at RHIC and the LHC
- Transverse nucleon structure and diagnostics of hard parton-parton processes at LHC
- Color Glass Condensate and Glasma
- Centrality control of hadron-nucleus interactions by detection of slow nucleons
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- Initial- and final-state temperatures of emission source from differential cross-section in squared momentum transfer in high energy collisions
- Extensive/nonextensive statistics for distributions of various charged particles produced in p+p and A+A collisions in a wide range of energies
- Measurement of D-meson production in pp, p-Pb and Pb-Pb collisions with ALICE at the LHC
- Kinetic freeze-out temperature and transverse flow velocity in Au-Au collisions at RHIC-BES energies