Coupling constant corrections in a holographic model of heavy ion collisions with nonzero baryon number density

被引:0
|
作者
Asmund Folkestad
Sašo Grozdanov
Krishna Rajagopal
Wilke van der Schee
机构
[1] Massachusetts Institute of Technology,Center for Theoretical Physics
[2] Utrecht University,Institute for Theoretical Physics and Center for Extreme Matter and Emergent Phenomena
来源
Journal of High Energy Physics | / 2019卷
关键词
AdS-CFT Correspondence; Gauge-gravity correspondence; Holography and quark-gluon plasmas; Quark-Gluon Plasma;
D O I
暂无
中图分类号
学科分类号
摘要
Sufficiently energetic collisions of heavy ions result in the formation of a droplet of a strongly coupled liquid state of QCD matter known as quark-gluon plasma. By using gauge-gravity duality (holography), a model of a rapidly hydrodynamizing and thermal- izing process like this can be constructed by colliding sheets of energy density moving at the speed of light and tracking the subsequent evolution. In this work, we consider the dual gravitational description of such collisions in the most general bulk theory with a four-derivative gravitational action containing a dynamical metric and a gauge field in five dimensions. Introducing the bulk gauge field enables the analysis of collisions of sheets which carry nonzero “baryon” number density in addition to energy density. Introducing the four-derivative terms enables consideration of such collisions in a gauge theory with finite gauge coupling, working perturbatively in the inverse coupling. While the dynamics of energy and momentum in the presence of perturbative inverse-coupling corrections has been analyzed previously, here we are able to determine the effect of such finite coupling corrections on the dynamics of the density of a conserved global charge, which we take as a model for the dynamics of nonzero baryon number density. In accordance with expec- tations, as the coupling is reduced we observe that after the collisions less baryon density ends up stopped at mid-rapidity and more of it ends up moving near the lightcone.
引用
收藏
相关论文
共 50 条
  • [21] Holographic phase diagram of quark-gluon plasma formed in heavy-ion collisions
    Aref'eva, I. Ya.
    Bagrov, A. A.
    Pozdeeva, E. O.
    JOURNAL OF HIGH ENERGY PHYSICS, 2012, (05):
  • [22] Free energy of a baryon at finite temperatures and its implications to the heavy-ion collisions
    Biswal, Minati
    Digal, Sanatan
    Saumia, P. S.
    MODERN PHYSICS LETTERS A, 2015, 30 (26)
  • [23] FORMATION TIME OF QUARK-GLUON PLASMA IN HEAVY-ION COLLISIONS IN THE HOLOGRAPHIC SHOCK WAVE MODEL
    Aref'eva, I. Ya.
    THEORETICAL AND MATHEMATICAL PHYSICS, 2015, 184 (03) : 1239 - 1255
  • [24] Quantitative and conceptual considerations for extracting the Knudsen number in heavy ion collisions
    Nagle, J. L.
    Steinberg, P.
    Zajc, W. A.
    PHYSICAL REVIEW C, 2010, 81 (02):
  • [25] Baryon Deceleration and Partonic Plasma Creation by Strong Chromofields in Ultrarelativistic Heavy-Ion Collisions
    Mishustin, I. N.
    Lyakhov, K. A.
    PHYSICS OF ATOMIC NUCLEI, 2012, 75 (03) : 371 - 392
  • [26] Effects of dissipative baryon current in heavy-ion collisions at RHIC-BES energies
    Wu, Xiang-Yu
    Pang, Long-Gang
    Qin, Guang-You
    Wang, Xin-Nian
    NUCLEAR PHYSICS A, 2021, 1005
  • [27] Viscous Hydrodynamic Model for Relativistic Heavy Ion Collisions
    Chaudhuri, A. K.
    ADVANCES IN HIGH ENERGY PHYSICS, 2013, 2013
  • [28] Triangular flow in heavy ion collisions in a multiphase transport model
    Xu, Jun
    Ko, Che Ming
    PHYSICAL REVIEW C, 2011, 84 (01):
  • [29] Model studies of fluctuations in the background for jets in heavy ion collisions
    Hughes, Charles
    da Silva, Antonio Carlos Oliveira
    Nattrass, Christine
    PHYSICAL REVIEW C, 2022, 106 (04)
  • [30] Hydrodynamic model of heavy-ion collisions with low momentum components
    Monnai, Akihiko
    JOURNAL OF PHYSICS G-NUCLEAR AND PARTICLE PHYSICS, 2023, 50 (09)