PaperPanorama

Nuclear Theory·nucl-th

Tuesday·September 14, 2021

11 papers5 primary·6 cross-listed

  1. 06

    [Submitted on 10 Sept 2021] (cross-list from hep-ph)

    Space-time structure of 3+1D color fields in high energy nuclear collisions

    Andreas Ipp🇦🇹 · David I. Müller🇦🇹 · Soeren Schlichting🇩🇪 · Pragya Singh🇩🇪

    We perform an analytic calculation of the color fields in heavy-ion collisions by considering the collision of longitudinally extended nuclei in the dilute limit of the Color Glass Condensate effective field theory of high-energy QCD. Based on general analytic expressions for the color fields in the future light cone, we evaluate the rapidity profile of the transverse pressure within a simple specific model of the nuclear collision geometry and compare our results to 3+1D classical Yang-Mills simulations.

    Comments:
    27 pages, 3 figures; v2 & v3: fixed typos
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    2109.05028 [pdf]
    PRD(2021)·32 citations
  2. 07

    [Submitted on 11 Sept 2021] (cross-list from hep-ph)

    Charged particle to photon ratio in heavy-ion collisions at RHIC: a different point of view

    Mohammad Asif Bhat🇮🇳 · Supriya Das🇮🇳

    We report an alternative explanation of the variation of charged particle to photon ratio in Cu+Cu collisions and Au+Au collisions from 1.4 0.1 to 1.2 0.1 at = 62.4 GeV and 200 GeV respectively in STAR experiment at RHIC. Based on the theoretical predictions and experimental results we argue that the additional contribution of direct photons at = 200 GeV in both Cu+Cu and Au+Au collisions are improving the ratio to 1.2 0.1 from 1.4 0.1.

    Comments:
    20 pages , 7 figures
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    2109.05204 [pdf]
    0 citations
  3. 08

    [Submitted on 12 Sept 2021] (cross-list from hep-ph)

    Impacts of EMC effects on the D meson modification factor in equilibrating QGP

    A. Mirjalili🇮🇷 · J. Sheibani🇮🇷 · K. Javidan🇮🇷 · R. Gharaei🇮🇷 · Shahin Atashbar Tehrani🇮🇷

    In this article we employ the nuclear EMC effect to extract the parton distribution functions (PDFs) inside the Lead (Pb) and Gold (Au) nuclei. Extracted PDFs are utilized to obtain the transverse momentum dependent (TMD) ones, using the computing codes like Pythia 8 or MCFM-10. Through this procedure TMDPDFs for charm and bottom quarks in Au at , Pb at and are calculated. To evaluate the validity of results and investigate the influence of nuclear EMC effect, the numerated TMDs are used as input to estimate heavy quark modification factor at transverse plane . This observable is calculated through numerical solution of the Fokker-Planck equation. For this purpose we need to extract the drag and diffusion coefficients, using the hard thermal loop correction. It is done in the frame work of the relativistic hydrodynamics up to the third order approximation of gradient expansion. The results are compared with same solutions when the input PFDs are considered inside the unbounded protons where the nuclear effect is not included. The comparison indicates a significant improvement of computed with available experimental data when the EMC effect is considered.

    Comments:
    16 pages 6 figures 1 tables
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    2109.05597 [pdf]
    Eur.Phys.J.Plus(2022)·2 citations
  4. 09

    [Submitted on 13 Sept 2021] (cross-list from hep-ph)

    Coalescence, the thermal model and multi-fragmentation: The energy and volume dependence of light nuclei production in heavy ion collisions

    Paula Hillmann🇩🇪 · Katharina Käfer🇩🇪 · Jan Steinheimer🇩🇪 · Volodymyr Vovchenko🇺🇸 · Marcus Bleicher🇩🇪

    We present results of a phase space coalescence approach within the UrQMD transport and -hybrid model for a very wide range of beam energies from SIS to LHC. The coalescence model is able to qualitatively describe the whole range of experimental data with a fixed set of parameters. Some systematic deviations are observed for very low beam energies where the role of feed down from heavier nuclei and multi-fragmentation becomes relevant. The coalescence results are mostly very close to the thermal model fits. However, both the coalescence approach as well as thermal fits are struggling to simultaneously describe the triton multiplicities measured with the STAR and ALICE experiment. The double ratio of , in the coalescence approach, is found to be essentially energy and centrality independent for collisions of heavy nuclei at beam energies of GeV. On the other hand the clear scaling of the and ratios with the systems volume is broken for peripheral collisions, where a canonical treatment and finite size effects become more important.

    Comments:
    10 pages, 9 figures, version accepted for publication. J. Phys. G: Nucl. Part. Phys (2022)
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    2109.05972 [pdf]
    J.Phys.G(2022)·40 citations
  5. 10

    [Submitted on 13 Sept 2021] (cross-list from hep-th)

    Chiral Vortical Effect in Extended Rarita-Schwinger Field Theory and Chiral Anomaly

    G. Yu. Prokhorov🇷🇺 · O. V. Teryaev🇷🇺 · V. I. Zakharov🇷🇺

    We consider the theory of Rarita-Schwinger field interacting with a field with spin 1/2, in the case of finite temperature, chemical potential and vorticity, and calculate the chiral vortical effect for spin 3/2. We have clearly demonstrated the role of interaction with the spin 1/2 field, the contribution of the terms with which to CVE is 6. Since the contribution from the Rarita-Schwinger field is -1, the overall coefficient in CVE is 6-1=5, which corresponds to the recent prediction of a gauge chiral anomaly for spin 3/2. The obtained values for the coefficients and are proportional to each other, but not proportional to the spin, which indicates a possible new universality between the temperature-related and the chemical potential-related vortical effects. The results obtained allow us to speculate about the relationship between the gauge and gravitational chiral anomalies.

    Comments:
    11 pages
    Subjects:
    High Energy Physics — Theory (hep-th); General Relativity and Quantum Cosmology (gr-qc); Nuclear Theory (nucl-th)
    arXiv:
    2109.06048 [pdf]
    PRD(2022)·11 citations
  6. 11

    [Submitted on 13 Sept 2021] (cross-list from nucl-ex)

    Remeasuring the anomalously enhanced in

    S. L. Henderson · T. Ahn · P. J. Fasano · A. E. McCoy · S. Aguilar · D. T. Blankstein · L. Caves · A. C. Dombos · R. K. Grzywacz · K. L. Jones · S. Jin · R. Kelmar and 5 other authors

    The large reported strength between the ground state and first excited state of , , presents a puzzle. Unlike in neighboring isotopes, where enhanced strengths may be understood to arise from deformation as rotational in-band transitions, the transition in Li cannot be understood in any simple way as a rotational in-band transition. Moreover, the reported strength exceeds \textit{ab initio} predictions by an order of magnitude. In light of this discrepancy, we revisited the Coulomb excitation measurement of this strength, now using particle- coincidences, yielding a revised of ~efm. We explore how this value compares to what might be expected in the limits of rotational models. While the present value is about a factor of three smaller than previously reported, it remains anomalously enhanced.

    Comments:
    21 pages, 5 figures
    Subjects:
    Nuclear Experiment (nucl-ex); Nuclear Theory (nucl-th)
    arXiv:
    2109.06081 [pdf]
    PRC(2024)·4 citations

Affiliations

first authorsco-authorsvia INSPIRE