4.4 Article

Determination of the strong coupling constant αS(mZ) from measurements of inclusive W± and Z boson production cross sections in proton-proton collisions at √s=7 and 8 TeV

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 6, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP06(2020)018

关键词

Hadron-Hadron scattering (experiments); Particle and resonance production

资金

  1. BMBWF (Austria)
  2. FWF (Austria)
  3. FNRS (Belgium)
  4. FWO (Belgium)
  5. CNPq (Brazil)
  6. CAPES (Brazil)
  7. FAPERJ (Brazil)
  8. FAPERGS (Brazil)
  9. FAPESP (Brazil)
  10. MES (Bulgaria)
  11. CERN (China)
  12. CAS (China)
  13. MoST (China)
  14. NSFC (China)
  15. COLCIENCIAS (Colombia)
  16. MSES (Croatia)
  17. CSF (Croatia)
  18. RPF (Cyprus)
  19. SENESCYT (Ecuador)
  20. MoER (Estonia)
  21. ERC IUT (Estonia)
  22. PUT (Estonia)
  23. ERDF (Estonia)
  24. Academy of Finland (Finland)
  25. MEC (Finland)
  26. HIP (Finland)
  27. CEA (France)
  28. CNRS/IN2P3 (France)
  29. BMBF (Germany)
  30. DFG (Germany)
  31. HGF (Germany)
  32. GSRT (Greece)
  33. NKFIA (Hungary)
  34. DAE (India)
  35. DST (India)
  36. IPM (Iran)
  37. SFI (Ireland)
  38. INFN (Italy)
  39. MSIP (Republic of Korea)
  40. NRF (Republic of Korea)
  41. MES (Latvia)
  42. LAS (Lithuania)
  43. MOE (Malaysia)
  44. UM (Malaysia)
  45. BUAP (Mexico)
  46. CINVESTAV (Mexico)
  47. CONACYT (Mexico)
  48. LNS (Mexico)
  49. SEP (Mexico)
  50. UASLP-FAI (Mexico)
  51. MOS (Montenegro)
  52. MBIE (New Zealand)
  53. PAEC (Pakistan)
  54. MSHE (Poland)
  55. NSC (Poland)
  56. FCT (Portugal)
  57. JINR (Dubna)
  58. MON (Russia)
  59. RosAtom (Russia)
  60. RAS (Russia)
  61. RFBR (Russia)
  62. NRC KI (Russia)
  63. MESTD (Serbia)
  64. SEIDI (Spain)
  65. CPAN (Spain)
  66. PCTI (Spain)
  67. FEDER (Spain)
  68. MOSTR (Sri Lanka)
  69. Swiss Funding Agencies (Switzerland)
  70. MST (Taipei)
  71. ThEPCenter (Thailand)
  72. IPST (Thailand)
  73. STAR (Thailand)
  74. NSTDA (Thailand)
  75. TUBITAK (Turkey)
  76. TAEK (Turkey)
  77. NASU (Ukraine)
  78. STFC (United Kingdom)
  79. DOE (U.S.A.)
  80. NSF (U.S.A.)
  81. Marie-Curie programme (European Union) [675440, 752730, 765710]
  82. European Research Council (European Union) [675440, 752730, 765710]
  83. Leventis Foundation
  84. A.P. Sloan Foundation
  85. Alexander von Humboldt Foundation
  86. Belgian Federal Science Policy Office
  87. Fonds pour la Formation a la Recherche dans l'Industrie et dans l'Agriculture (FRIA-Belgium)
  88. Agentschap voor Innovatie door Wetenschap en Technologie (IWT-Belgium)
  89. F.R.S.-FNRS (Belgium) under the Excellence of Science - EOS - be.h project [30820817]
  90. FWO (Belgium) under the Excellence of Science - EOS - be.h project [30820817]
  91. Beijing Municipal Science AMP
  92. Technology Commission [Z181100004218003]
  93. Ministry of Education, Youth and Sports (MEYS) of the Czech Republic
  94. Deutsche Forschungsgemeinschaft (DFG) under Germany's Excellence Strategy [EXC 2121, 390833306]
  95. Lendulet (Momentum) Programme
  96. Janos Bolyai Research Scholarship of the Hungarian Academy of Sciences
  97. New National Excellence Program UNKP
  98. NKFIA research grants (Hungary) [123842, 123959, 124845, 124850, 125105, 128713, 128786, 129058]
  99. Council of Science and Industrial Research, India
  100. HOMING PLUS programme of the Foundation for Polish Science
  101. European Union, Regional Development Fund
  102. Mobility Plus programme of the Ministry of Science and Higher Education
  103. National Science Center (Poland) [Harmonia 2014/14/M/ST2/00428, Opus 2014/13/B/ST2/02543, 2014/15/B/ST2/03998, 2015/19/B/ST2/02861, Sonata-bis 2012/07/E/ST2/01406]
  104. National Priorities Research Program by Qatar National Research Fund
  105. Ministry of Science and Education (Russia) [3.2989.2017]
  106. Programa Estatal de Fomento de la Investigacion Cientifica y Tecnica de Excelencia Maria de Maeztu [MDM-2015-0509]
  107. Programa Severo Ochoa del Principado de Asturias
  108. Thalis program - EU-ESF
  109. Aristeia program - EU-ESF
  110. Greek NSRF
  111. Rachadapisek Sompot Fund for Postdoctoral Fellowship, Chulalongkorn University (Thailand)
  112. Chulalongkorn Academic into Its 2nd Century Project Advancement Project (Thailand)
  113. Nvidia Corporation
  114. Welch Foundation [C-1845]
  115. Weston Havens Foundation (U.S.A.)
  116. Horizon 2020 Grant (European Union) [675440, 752730, 765710]
  117. STFC [ST/L005603/1, ST/M004775/1, ST/K003542/1, ST/S000739/1, ST/N001273/1, ST/S00078X/1, ST/K001639/1] Funding Source: UKRI
  118. Science and Technology Facilities Council [ST/K001639/1, ST/K003542/1, ST/M004775/1, ST/N001273/1, ST/L005603/1] Funding Source: researchfish

向作者/读者索取更多资源

Twelve measurements of inclusive cross sections of W-+/- and Z boson production, performed in proton-proton collisions at centre-of-mass energies of 7 and 8 TeV, are compared with perturbative quantum chromodynamics calculations at next-to-next- to-leading order (NNLO) accuracy obtained with the CT14, HERAPDF2.0, MMHT14, and NNPDF3.0 parton distribution functions (PDFs). Data and theory agree well for all PDF sets, taking into account the experimental and theoretical uncertainties. A novel procedure is employed to extract the strong coupling constant at the Z pole mass from a detailed comparison of all the experimental fiducial cross sections to the corresponding NNLO theoretical predictions, yielding alpha S (m(Z)) = 0.1163(-0.0031)(+0.0024) (CT14), 0.1072(-0.0040)(+0.0043) (HERAPDF2.0), 0.1186 +/- 0. 0025 (MMHT14), and 0.1147 +/- 0.0023 (NNPDF3.0). Using the results obtained with the CT14 and MMHT14 PDFs, which yield the most robust and stable alpha(S)(mZ) extractions, a value alpha(S)(m(Z)) = 0.1175(-0.0028)(+0.0025) is determined.

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