PaperPanorama

Nuclear Theory·nucl-th

Thursday·December 17, 2020

5 papers2 primary·3 cross-listed

  1. 03

    Saturation effects in SIDIS at very forward rapidities

    E. Iancu🇫🇷 · A.H. Mueller🇺🇸 · D.N. Triantafyllopoulos🇮🇹 · S.Y. Wei🇮🇹

    Using the dipole picture for electron-nucleus deep inelastic scattering at small Bjorken , we study the effects of gluon saturation in the nuclear target on the cross-section for SIDIS (single inclusive hadron, or jet, production). We argue that the sensitivity of this process to gluon saturation can be enhanced by tagging on a hadron (or jet) which carries a large fraction of the longitudinal momentum of the virtual photon. This opens the possibility to study gluon saturation in relatively hard processes, where the virtuality is (much) larger than the target saturation momentum , but such that . Working in the limit , we predict new phenomena which would signal saturation in the SIDIS cross-section. For sufficiently low transverse momenta of the produced particle, the dominant contribution comes from elastic scattering in the black disk limit, which exposes the unintegrated quark distribution in the virtual photon. For larger momenta , inelastic collisions take the leading role. They explore gluon saturation via multiple scattering, leading to a Gaussian distribution in centred around . When , this results in a Cronin peak in the nuclear modification factor (the ratio) at moderate values of . With decreasing , this peak is washed out by the high-energy evolution and replaced by nuclear suppression () up to large momenta . Still for , we also compute SIDIS cross-sections integrated over . We find that both elastic and inelastic scattering are controlled by the black disk limit, so they yield similar contributions, of zeroth order in the QCD coupling.

    hep-phnucl-thJHEP(2021)·29 citations
  2. 04

    Equilibration of the Quark-Gluon Plasma at finite net-baryon density in QCD kinetic theory

    Xiaojian Du🇩🇪 · Sören Schlichting🇩🇪

    We explore the out-of-equilibrium dynamics of the Quark-Gluon Plasma at zero and finite net-baryon density based on an effective kinetic theory of Quantum Chromo Dynamics (QCD). By investigating the isotropization of the longitudinal pressure, we determine the relevant time and temperature scales for the onset of viscous hydrodynamics, and quantify the dependence on the chemical composition of the QGP. By extrapolating our results to realistic coupling strength, we discuss phenomenological consequences regarding the role of the pre-equilibrium phase at different collision energies.

    hep-phnucl-thPRL(2021)·62 citations
  3. 05

    Equilibration of weakly coupled QCD plasmas

    Xiaojian Du🇩🇪 · Sören Schlichting🇩🇪

    We employ a non-equilibrium Quantum Chromodynamics (QCD) kinetic description to study the kinetic and chemical equilibration of the Quark-Gluon Plasma (QGP) at weak coupling. Based on our numerical framework, which explicitly includes all leading order processes involving light flavor degrees of freedom, we investigate the thermalization process of homogeneous and isotropic plasmas far-from equilibrium and determine the relevant time scales for kinetic and chemical equilibration. We further simulate the longitudinally expanding pre-equilibrium plasma created in ultrarelativistic heavy-ion collisions at zero and non-zero density of the conserved charges and study its microscopic and macroscopic evolution towards equilibrium.

    hep-phnucl-thPRD(2021)·63 citations

Affiliations

first authorsco-authorsvia INSPIRE