PaperPanorama

Nuclear Theory·nucl-th

Tuesday·April 21, 2015

14 papers9 primary·5 cross-listed

  1. 10

    Energy Dependence of Direct-Quarkonium Production in pp Collisions from Fixed-Target to LHC Energies: Complete One-Loop Analysis

    Yu Feng🇨🇳 · Jean-Philippe Lansberg🇫🇷 · Jian-Xiong Wang🇨🇳

    We compute the energy dependence of the P_T-integrated cross section of directly produced quarkonia in pp collisions at next-to-leading order (NLO), namely up to alpha_s^3, within nonrelativistic QCD (NRQCD). Our analysis is based on the idea that the P_T-integrated and the P_T-differential cross sections can be treated as two different observables. The colour-octet NRQCD parameters needed to predict the P_T-integrated yield can thus be extracted from the fits of the P_T-differential cross sections at mid and large P_T. For the first time, the total cross section is evaluated in NRQCD at full NLO accuracy using the recent NLO fits of the P_T-differential yields at RHIC, the Tevatron and the LHC. Both the normalisation and the energy dependence of the J/psi, psi' and Upsilon(1S), we obtained, are in disagreement with the data irrespective of the fit method. The same is true if one uses CEM-like colour-octet NRQCD parameters. If, on the contrary, one disregards the colour-octet contribution, the existing data in the TeV range are well described by the alpha_s^3 contribution in the colour-singlet model --which, at alpha_s^4, however shows an unphysical energy dependence. A similar observation is made for eta(c,b). This calls for a full NNLO or for a resummation of the initial-state radiation in this channel. In any case, past claims that colour-octet transitions are dominantly responsible for low-P_T quarkonium production are not supported by our results. This may impact the interpretation of quarkonium suppression in high-energy proton-nucleus and nucleus-nucleus collisions.

    hep-phhep-exnucl-exnucl-thEPJC(2015)·65 citations
  2. 11

    Lepton-pair production in ultraperipheral collisions at AFTER@LHC

    J.P. Lansberg🇫🇷 · L. Szymanowski🇵🇱 · J. Wagner🇵🇱

    We investigate the potentialities offered by the study of lepton-pair production in ultraperipheral collisions at a fixed-target experiment using the proton and ion LHC beams. In these collisions, exclusive or semi-exclusive lepton-pair production can be used as luminosity monitor as well as a check of the equivalent-photon approximation, via the measurement of the Bethe-Heitler cross section. It can also serve as a probe of the inner hadron structure via the measurement of the lepton-pair azimuthal asymmetry which is sensitive to the timelike virtual Compton scattering. We also briefly discuss the possibility offered by the study of eta(c) production. Finally, we outline the possibilities for lepton-pair production by Pomeron-Odderon fusion in exclusive pp and pA collisions.

    hep-phhep-exnucl-exnucl-thJHEP(2015)·22 citations
  3. 12

    Selecting specific initial configuration using spectator neutrons in U+U collisions

    Vipul Bairathi🇮🇳 · Md. Rihan Haque🇮🇳 · Bedangadas Mohanty🇮🇳

    We present a method to select events with specific initial configuration, namely body-tip, in heavy-ion collisions using deformed Uranium nuclei. We propose to use asymmetry in spectator neutron numbers to filter out these body-tip events from the unbiased configurations in U+U collisions. We have used a variable S_eta to differentiate between the body-tip and unbiased configurations. We have calculated the second order azimuthal anisotropy, namely elliptic flow (v2), for this body-tip configuration in the framework of a transport model and found it to be consistently lower compared to that in unbiased configurations as we expected. The purity of selecting such events in a real experiment is also discussed.

    nucl-exhep-phnucl-thPRC(2015)·14 citations
  4. 13

    Exploring the proton spin structure

    Cédric Lorcé (SLAC and Liège U.)🇺🇸

    Understanding the spin structure of the proton is one of the main challenges in hadronic physics. While the concepts of spin and orbital angular momentum are pretty clear in the context of non-relativistic quantum mechanics, the generalization of these concepts to quantum field theory encounters serious difficulties. It is however possible to define meaningful decompositions of the proton spin that are (in principle) measurable. We propose a summary of the present situation including recent developments and prospects of future developments.

    hep-phnucl-thSpringer Proc.Phys.(2016)·1 citation
  5. 14

    Interpreting Single Jet Measurements in Pb+Pb Collisions at the LHC

    Martin Spousta🇨🇿 · Brian Cole🇺🇸

    Results are presented from a phenomenological analysis of recent measurements of jet suppression and modifications of jet fragmentation functions in Pb+Pb collisions at the LHC. Particular emphasis is placed on the impact of the differences between quark and gluon jet quenching on the transverse momentum () dependence of the jet and on the fragmentation functions, . Primordial quark and gluon parton distributions were obtained from PYTHIA8 and were parameterized using simple power-law functions and extensions to the power-law function which were found to better describe the PYTHIA8 parton spectra. A simple model for the quark energy loss based on the shift formalism is used to model and using both analytic results and using direct Monte-Carlo sampling of the PYTHIA parton spectra. The model is capable of describing the full , rapidity, and centrality dependence of the measured jet using three effective parameters. A key result from the analysis is that the modifications observed in the data, excluding the enhancement at low-, may result primarily from the different quenching of the quarks and gluons. The model is also capable of reproducing the charged hadron at high transverse momentum. Predictions are made for the jet at large rapidities where it has not yet been measured and for the rapidity dependence of .

    hep-phnucl-thEPJC(2016)·110 citations

Affiliations

first authorsco-authorsvia INSPIRE