PaperPanorama

Nuclear Theory·nucl-th

Friday·July 16, 2021

3 papers1 primary·2 cross-listed

  1. 01

    Checking Non-Flow Assumptions and Results via PHENIX Published Correlations in , Au, Au, HeAu at = 200 GeV

    J.L. Nagle🇺🇸 · R. Belmont🇺🇸 · S.H. Lim🇰🇷 · B. Seidlitz🇺🇸

    Recently the PHENIX Collaboration has made available two-particle correlation Fourier coefficients for multiple detector combinations in minimum bias p+p and 0-5% central p+Au, d+Au, 3He+Au collisions at 200 GeV [1]. Using these coefficients for three sets of two-particle correlations, azimuthal anisotropy coefficients and are extracted for midrapidity charged hadrons as a function of transverse momentum. In this paper, we use the available coefficients to explore various non-flow hypotheses as well as compare the results with theoretical model calculations. The non-flow methods fail basic closure tests with AMPT and PYTHIA/ANGANTYR, particularly when including correlations with particles in the low multiplicity light-projectile going direction. In data, the non-flow adjusted results are modestly lower in p+Au and the adjusted results are more significantly higher in p+Au and d+Au. However, the resulting higher values for the ratio in p+Au at RHIC compared to p+Pb at the LHC is additional evidence for a significant over-correction. Incorporating these additional checks, the conclusion that these flow coefficients are dominated by initial geometry coupled with final-state interactions (e.g.~hydrodynamic expansion of quark-gluon plasma) remains true, and explanations based on initial-state glasma are ruled out. The detailed balance between intrinsic and fluctuation-driven geometry and the exact role of weakly versus strongly-coupled pre-hydrodynamic evolution remains an open question for triangular flow, requiring further theoretical and experimental investigation.

    nucl-thnucl-exPRC(2022)·11 citations
  2. 02

    Studying of final states in p-Au and p-Pb collisions

    Tetiana Obikhod🇺🇦 · Ievgenii Petrenko🇺🇦

    In the framework of PYTHIA8.2 program we considered p-Pb and p-Au heavy ion collisions at the energy of 5.02 TeV and 8 TeV. The advantage of this program is in the combining of several nucleon-nucleon collisions into one heavy ion collision, based on phenomenological treatment of a hadron as a vortex line in a color superconducting medium, the consistent treatment of the central rapidity region with improvements of Glauber-like model where diffractive excitation processes are taken into account. We have considered the influence of impact parameter correlations on the production cross sections of p-Pb and p-Au processes to estimate the influence of hard and soft subprocesses on basic hadronic final-state properties in proton-ion collisions. Using these characteristics based on semi-hard multiparton interaction model we received the transverse momentum and rapidity distributions of K-meson and Lambda baryon at the energy of 5.02 TeV and 8.14 TeV.

    hep-phnucl-thPoS(2022)·1 citation
  3. 03

    The decay of the

    R. Molina🇪🇸 · M. Doering🇺🇸 · W. H. Liang🇨🇳 · E. Oset🇪🇸

    We evaluate the decay width from the perspective that the resonance is dynamically generated from the pseudoscalar-vector interaction and the arises from the pseudoscalar-pseudoscalar interaction. A triangle mechanism with followed by and a fusion of two pions within the loop to produce the provides the mechanism for this decay under these assumptions for the nature of the two resonances. We obtain widths of the order of MeV. Present experimental results differ substantially from each other, suggesting that extra efforts should be devoted to the precise extraction of this important partial decay width, which should provide valuable information on the nature of the axial vector and scalar meson resonances and help clarify the role of the channel in recent lattice QCD calculations of the .

    hep-phnucl-thEPJC(2021)·11 citations

Affiliations

first authorsco-authorsvia INSPIRE