PaperPanorama

Nuclear Theory·nucl-th

Friday·March 29, 2019

10 papers2 primary·8 cross-listed

  1. 03

    Topological charge fluctuations in the Glasma

    Pablo Guerrero-Rodríguez🇪🇸

    The early-time evolution of the system generated in ultra-relativistic heavy ion collisions is dominated by the presence of strong color fields known as Glasma fields. These can be described following the classical approach embodied in the Color Glass Condensate effective theory, which approximates QCD in the high gluon density regime. In this framework we perform an analytical first-principles calculation of the two-point correlator of the divergence of the Chern-Simons current at proper time , which characterizes the early fluctuations of axial charge density in the plane transverse to the collision axis. This object plays a crucial role in the description of anomalous transport phenomena such as the Chiral Magnetic Effect. We compare our results to those obtained under the Glasma Graph approximation, which assumes gluon field correlators to obey Gaussian statistics. While this approach proves to be equivalent to the exact calculation in the limit of short transverse separations, important differences arise at larger distances, where our expression displays a remarkably slower fall-off than the Glasma Graph result ( vs.\ power-law decay). This discrepancy emerges from the non-linear dynamics mapping the Gaussianly-distributed color source densities onto the Glasma fields, encoded in the classical Yang-Mills equations. Our results support the conclusions reached in a previous work, where we found indications that the color screening of correlations in the transverse plane occurs at relatively large distances.

    hep-phnucl-thJHEP(2019)·7 citations
  2. 04

    Patterns of CP violation from mirror symmetry breaking in the Dalitz plot

    Susan Gardner🇺🇸 · Jun Shi🇺🇸

    A violation of mirror symmetry in the Dalitz plot has long been recognized as a signal of C and CP violation. Here we show how the isospin of the underlying C- and CP-violating structures can be reconstructed from their kinematic representation in the Dalitz plot. Our analysis of the most recent experimental data reveals, for the first time, that the C- and CP-violating amplitude with total isospin is much more severely suppressed than that with total isospin .

    hep-phnucl-thPRD(2020)·29 citations
  3. 05

    Structure functions at small x from world-lines. I: Unpolarized distributions

    Andrey Tarasov🇺🇸 · Raju Venugopalan🇺🇸

    The world-line representation of quantum field theory is a powerful framework for the computation of perturbative multi-leg Feynman amplitudes. In particular, in gauge theories, it provides an efficient way, via point particle Grassmann functional integrals, to compute spinor and color traces in these amplitudes. Further, semi-classical approximations to quantum mechanical world-line trajectories provide useful intuition in a wide range of dynamical problems. We develop here the world-line approach to compute deeply inelastic structure functions in the small x Regge limit of QCD. In particular, in a shockwave approximation valid in this limit, we show how one recovers the well-known dipole model for unpolarized structure functions. In a follow-up work, we will discuss the world-line computation of polarized structure functions at small x.

    hep-phhep-thnucl-thPRD(2019)·17 citations
  4. 06

    Beam energy dependence of (anti-)deuteron production in Au+Au collisions at RHIC

    J. Adam · L. Adamczyk · J. R. Adams · J. K. Adkins · G. Agakishiev · M. M. Aggarwal · Z. Ahammed · I. Alekseev · D. M. Anderson · R. Aoyama · A. Aparin · D. Arkhipkin and 336 other authors

    We report the energy dependence of mid-rapidity (anti-)deuteron production in Au+Au collisions at 7.7, 11.5, 14.5, 19.6, 27, 39, 62.4, and 200 GeV, measured by the STAR experiment at RHIC. The yield of deuterons is found to be well described by the thermal model. The collision energy, centrality, and transverse momentum dependence of the coalescence parameter are discussed. We find that the values of for anti-deuterons are systematically lower than those for deuterons, indicating that the correlation volume of anti-baryons is larger than that of baryons at from 19.6 to 39 GeV. In addition, values of are found to vary with collision energy and show a broad minimum around 20 to 40 GeV, which might imply a change of the equation of state of the medium in these collisions.

    nucl-exhep-exnucl-thPRC(2019)·139 citations
  5. 07

    Study of , , and in a quasipotential Bethe-Salpeter equation approach

    Jun He🇨🇳

    Very recently, the LHCb Collaboration reported their new results about the pentaquarks at charm energy region. Based on the new experimental results, we recalculate the molecular states composed of a baryon and a meson in a quasipotential Bethe-Salpeter equation approach. The two-peak structure around 4450 MeV can be interpreted as two bound states with spin parities and . The newly observed pentaquark can be assigned as a bound state with spin parity . The experimental determination of spin parities will be very helpful to understand the internal structure of these pentaquarks.

    hep-phnucl-thEPJC(2019)·209 citations
  6. 08

    Nucleon Structure from Lattice QCD Calculations

    Jian-Wei Qiu🇺🇸

    Parton distribution and correlation functions describe the relation between a hadron and the quarks and gluons (or collectively, the partons) within it, and carry rich information on hadron's partonic structure that cannot be calculated by QCD perturbation theory. In this talk, I will review what lattice QCD can and cannot do for calculating the parton distribution and correlation functions, and the new ideas and efforts around the world to explore nucleon structure from lattice QCD calculations by combining the strength of both lattice QCD and perturbative QCD in such a way that is complementary to our on-going effort to extract these fundamental functions from experimental data.

    hep-phhep-latnucl-thJPS Conf.Proc.(2019)·2 citations
  7. 09

    Spectral function for overoccupied gluodynamics from classical lattice simulations

    K. Boguslavski🇦🇹 · A. Kurkela🇨🇭 · T. Lappi🇫🇮 · J. Peuron🇮🇹

    We study the spectral properties of an overoccupied gluonic system far from equilibrium. Using classical Yang-Mills simulations and linear response theory, we determine the statistical and spectral functions. We measure dispersion relations and damping rates of transversally and longitudinally polarized excitations in the gluonic plasma, and also study further structures in the spectral function.

    hep-phnucl-thActa Phys.Polon.B(2019)·1 citation
  8. 10

    Pentaquark and Tetraquark states

    Yan-Rui Liu🇨🇳 · Hua-Xing Chen🇨🇳 · Wei Chen🇨🇳 · Xiang Liu🇨🇳 · Shi-Lin Zhu🇨🇳

    The past seventeen years have witnessed tremendous progress on the experimental and theoretical explorations of the multiquark states. The hidden-charm and hidden-bottom multiquark systems were reviewed extensively in [Phys. Rept. 639 (2016) 1-121]. In this article, we shall update the experimental and theoretical efforts on the hidden heavy flavor multiquark systems in the past three years. Especially the LHCb collaboration not only confirmed the existence of the hidden-charm pentaquarks but also provided strong evidence of the molecular picture. Besides the well-known and states, we shall discuss more interesting tetraquark and pentaquark systems either with one, two, three or even four heavy quarks. Some very intriguing states include the fully heavy exotic tetraquark states and doubly heavy tetraquark states , where is a heavy quark. The states may be produced at LHC while the system may be searched for at BelleII and LHCb. Moreover, we shall pay special attention to various theoretical schemes. We shall emphasize the model-independent predictions of various models which are truly/closely related to Quantum Chromodynamics (QCD). There have also accumulated many lattice QCD simulations through multiple channel scattering on the lattice in recent years, which provide deep insights into the underlying structure/dynamics of the states. In terms of the recent states, the lattice simulations of the charmed baryon and anti-charmed meson scattering are badly needed. We shall also discuss some important states which may be searched for at BESIII, BelleII and LHCb in the coming years.

    hep-phhep-exhep-latnucl-thPPNP(2019)·914 citations

Affiliations

first authorsco-authorsvia INSPIRE