PaperPanorama

Nuclear Theory·nucl-th

Monday·September 26, 2016

8 papers4 primary·4 cross-listed

  1. 05

    Initial energy density of 7 and 8 TeV p+p collisions at the LHC

    Mate Csanad🇭🇺 · Tamas Csorgo🇭🇺 · Ze-Fang Jiang🇨🇳 · Chun-Bin Yan🇭🇺

    Results from the RHIC and LHC experiments show, that in relativistic heavy ion collisions, a new state of matter, a strongly interacting perfect fluid is created. Accelerating, exact and explicit solutions of relativistic hydrodynamics allow for a simple and natural description of this medium. A finite rapidity distribution arises from these solutions, leading to an advanced estimate of the initial energy density of high energy collisions. These solutions can be utilized to describe various aspects of proton-proton collisions, as originally suggested by Landau. We show that an advanced estimate based on hydrodynamics yields an initial energy density in and 8 TeV p+p collisions at LHC on the same order as the critical energy density from lattice QCD, and a corresponding initial temperature around the critical temperature from QCD and the Hagedorn temperature. The multiplicity dependence of the estimated initial energy density suggests that in high multiplicity pp collisions at the LHC, there is large enough initial energy density to create a non-hadronic perfect fluid.

    hep-phnucl-thUniverse(2017)·32 citations
  2. 06

    Holographic Photon Production in Heavy Ion Collisions

    Ioannis Iatrakis🇳🇱 · Elias Kiritsis🇫🇷 · Chun Shen🇨🇦 · Di-Lun Yang🇯🇵

    The thermal-photon emission from strongly coupled gauge theories at finite temperature is calculated using holographic models for QCD in the Veneziano limit (V-QCD). The emission rates are then embedded in hydrodynamic simulations combined with prompt photons from hard scattering and the thermal photons from hadron gas to analyze the spectra and anisotropic flow of direct photons at RHIC and LHC. The results from different sources responsible for the thermal photons in QGP including the weakly coupled QGP (wQGP) from perturbative calculations, strongly coupled super Yang-Mills (SYM) plasma (as a benchmark for reference), and Gubser's phenomenological holographic model are then compared. It is found that the direct-photon spectra are enhanced in the strongly coupled scenario compared with the ones in the wQGP, especially at high momenta. Moreover, both the elliptic flow and triangular flow of direct photons are amplified at high momenta for V-QCD and the SYM plasma. The results are further compared with experimental observations.

    hep-phhep-thnucl-thJHEP(2017)·36 citations
  3. 07

    The effective cross section for double parton scattering within a holographic AdS/QCD approach

    Marco Traini🇫🇷 · Matteo Rinaldi🇪🇸 · Sergio Scopetta🇮🇹 · Vicente Vento🇪🇸

    A first attempt to apply the AdS/QCD framework for a bottom-up approach to the evaluation of the effective cross section for double parton scattering in proton-proton collisions is presented. The main goal is the analytic evaluation of the dependence of the effective cross section on the longitudinal momenta of the involved partons, obtained within the holographic Soft-Wall model. If measured in high-energy processes at hadron colliders, this momentum dependence could open a new window on 2-parton correlations in a proton.

    hep-phnucl-thPLB(2017)·28 citations
  4. 08

    Heavy quark fragmentation functions at next-to-leading perturbative QCD

    S. M. Moosavi Nejad🇮🇷 · P. Sartipi Yarahmadi🇮🇷

    It is well-known that the dominant mechanism to produce hadronic bound states with large transverse momentum is fragmentation. This mechanism is described by the fragmentation functions (FFs) which are the universal and process-independent functions. Here, we review the perturbative FFs formalism as an appropriate tool for studying these hadronization processes and detail the extension of this formalism at next-to-leading order (NLO). Using the Suzuki's model, we calculate the perturbative QCD FF for a heavy quark to fragment into a S-wave heavy meson at NLO. As an example, we study the LO and NLO FFs for a charm quark to split into the S-wave -meson and compare our analytic results both with experimental data and well-known phenomenological models.

    hep-phnucl-thEPJA(2016)·33 citations

Affiliations

first authorsco-authorsvia INSPIRE