4.2 Article

Predictions for cold nuclear matter effects in&IT p&IT plus Pb collisions at √&ITSNN&IT=8.16 TeV

期刊

NUCLEAR PHYSICS A
卷 972, 期 -, 页码 18-85

出版社

ELSEVIER
DOI: 10.1016/j.nuclphysa.2017.11.015

关键词

Perturbative QCD; Hard and electromagnetic probes; Cold nuclear matter; Charged hadron production

资金

  1. European Research Council [ERC-2015-CoG-681707]
  2. Academy of Finland [267321, 273464, 303756, 297058]
  3. Sonata Bis [DEC-2013/10/E/ST2/00656]
  4. Ministerio de Ciencia e Innovacion of Spain [FPA2014-58293-C2-1-P]
  5. Xunta de Galicia [AGRUP2015/11]
  6. French CNRS via the LIA FCPPL project Quarkonium4AFTER
  7. Defi Inphyniti project Theorie LHC France
  8. ILP Labex [ANR-11-IDEX-0004-02, ANR-10-LABX-63]
  9. FONDECYT [1150135]
  10. Conicyt PIA/Basal [FB0821]
  11. ECOS-Conicyt [C14E01]
  12. Ministry of Science and Technology of the People's Republic of China [2014CB845404, 2014DFG02050]
  13. NSFC of China [11322546, 11435004, 11521064, 11628508]
  14. Hungarian Chinese [UT 12 CN-1-2012-0016, MOST 2014DFG02050]
  15. Hungarian National Research Fund (OTKA) [K123815, K120660]
  16. Hungarian Academy of Sciences
  17. Wigner GPU laboratory
  18. United States Department of Energy (DOE) [DE-SC-0002145, DE-FG02-93ER40771, DE-SC-0012704, DE-FG02-97ER410014, DE-AC52-07NA27344, DE-AC02-05CH11231]
  19. DOE Early Career Program [2012LANL7033]
  20. DOE [DE-AC02-05CH11231]
  21. Anillo [ACT1406]
  22. Narodowe Centrum Nauki

向作者/读者索取更多资源

Predictions for cold nuclear matter effects on charged hadrons, identified light hadrons, quarkonium and heavy flavor hadrons, Drell-Yan dileptons, jets, photons, gauge bosons and top quark pairs produced in p+Pb collisions at, root S-NN = 8.16 TeV are compiled and, where possible, compared to each other. Predictions of the normalized ratios of p+Pb to p+ p cross sections are also presented for most of the observables, providing new insights into the expected role of cold nuclear matter effects. In particular, the role of nuclear parson distribution functions on particle production can now be probed over a wider range of phase space than ever before. (C) 2018 Elsevier B.V. All rights reserved.

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