4.7 Article

Study of WWγ and WZγ production in pp collisions at √s=8 TeV and search for anomalous quartic gauge couplings with the ATLAS experiment

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EUROPEAN PHYSICAL JOURNAL C
卷 77, 期 9, 页码 -

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SPRINGER
DOI: 10.1140/epjc/s10052-017-5180-3

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资金

  1. ANPCyT, Argentina
  2. YerPhI, Armenia
  3. ARC, Australia
  4. BMWFW, Austria
  5. FWF, Austria
  6. ANAS, Azerbaijan
  7. SSTC, Belarus
  8. CNPq, Brazil
  9. FAPESP, Brazil
  10. NSERC, Canada
  11. NRC, Canada
  12. CFI, Canada
  13. CERN
  14. CONICYT, Chile
  15. CAS, China
  16. MOST, China
  17. NSFC, China
  18. COLCIENCIAS, Colombia
  19. MSMT CR, Czech Republic
  20. MPO CR, Czech Republic
  21. VSC CR, Czech Republic
  22. DNRF, Denmark
  23. DNSRC, Denmark
  24. IN2P3-CNRS, CEA-DSM/IRFU, France
  25. SRNSF, Georgia
  26. BMBF, Germany
  27. HGF, Germany
  28. MPG, Germany
  29. GSRT, Greece
  30. RGC, Hong Kong SAR, China
  31. ISF, Israel
  32. I-CORE, Israel
  33. Benoziyo Center, Israel
  34. INFN, Italy
  35. MEXT, Japan
  36. JSPS, Japan
  37. CNRST, Morocco
  38. NWO, Netherlands
  39. RCN, Norway
  40. MNiSW, Poland
  41. NCN, Poland
  42. FCT, Portugal
  43. MNE/IFA, Romania
  44. MES of Russia, Russian Federation
  45. NRC KI, Russian Federation
  46. JINR
  47. MESTD, Serbia
  48. MSSR, Slovakia
  49. ARRS, Slovenia
  50. MIZS, Slovenia
  51. DST/NRF, South Africa
  52. MINECO, Spain
  53. SRC, Sweden
  54. Wallenberg Foundation, Sweden
  55. SERI, Switzerland
  56. SNSF, Switzerland
  57. Canton of Bern, Switzerland
  58. Canton of Geneva, Switzerland
  59. MOST, Taiwan
  60. TAEK, Turkey
  61. STFC, United Kingdom
  62. DOE, United States of America
  63. NSF, United States of America
  64. BCKDF, Canada
  65. Canada Council, Canada
  66. CANARIE, Canada
  67. CRC, Canada
  68. Compute Canada, Canada
  69. FQRNT, Canada
  70. Ontario Innovation Trust, Canada
  71. EPLANET, European Union
  72. ERC, European Union
  73. ERDF, European Union
  74. FP7, European Union
  75. Horizon, European Union
  76. Marie Sklodowska-Curie Actions, European Union
  77. Investissement d'Avenir Labex, France
  78. ANR, France
  79. Region Auvergne, France
  80. DFG, Germany
  81. AvH Foundation, Germany
  82. Herakleitos programme - EU-ESF
  83. Greek NSRF
  84. BSF, Israel
  85. GIF, Israel
  86. Minerva, Israel
  87. BRF, Norway
  88. CERCA Programme Generalitat de Catalunya, Spain
  89. Generalitat Valenciana, Spain
  90. Royal Society, United Kingdom
  91. Leverhulme Trust, United Kingdom
  92. Thales programme - EU-ESF
  93. Aristeia programme - EU-ESF
  94. Investissement d'Avenir Idex, France
  95. Fondation Partager le Savoir, France
  96. Direct For Mathematical & Physical Scien
  97. Division Of Physics [1624739] Funding Source: National Science Foundation
  98. Science and Technology Facilities Council [1366825, ST/K001361/1, PP/E000452/1, ST/M006417/1, ST/N000234/1, ST/M001431/1, ST/H001158/1, ST/H001158/2, ST/N000277/1, ATLAS, ST/K003666/1, 1653101, GRIDPP, ST/L001144/1, ST/N000331/1, 1659192, ST/L005662/1, ST/I005846/1] Funding Source: researchfish

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This paper presents a study of WW gamma and WZ gamma triboson production using events from proton-proton collisions at a centre-of-mass energy of root s = 8 TeV recorded with the ATLAS detector at the LHC and corresponding to an integrated luminosity of 20.2 fb(-1). The WW gamma production cross-section is determined using a final state containing an electron, a muon, a photon, and neutrinos (e upsilon mu upsilon gamma). Upper limits on the production cross-section of the e upsilon mu upsilon gamma final state and theWW gamma and WZ gamma final states containing an electron or a muon, two jets, a photon, and a neutrino (e upsilon j j gamma or mu upsilon j j gamma) are also derived. The results are compared to the cross-sections predicted by the Standard Model at next-to-leading order in the strong-coupling constant. In addition, upper limits on the production cross-sections are derived in a fiducial region optimised for a search for newphysics beyond the Standard Model. The results are interpreted in the context of anomalous quartic gauge couplings using an effective field theory. Confidence intervals at 95% confidence level are derived for the 14 coupling coefficients to which WW gamma and WZ gamma production are sensitive.

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