4.4 Article

Search for a heavy resonance decaying to a pair of vector bosons in the lepton plus merged jet final state root s=13 TeV

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 5, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP05(2018)088

关键词

Beyond Standard Model; Hadron-Hadron scattering (experiments)

资金

  1. BMWFW (Austria)
  2. FWF (Austria)
  3. FNRS (Belgium)
  4. FWO (Belgium)
  5. CNPq (Brazil)
  6. CAPES (Brazil)
  7. FAPERJ (Brazil)
  8. FAPESP (Brazil)
  9. MES (Bulgaria)
  10. CERN
  11. CAS (China)
  12. MoST (China)
  13. NSFC (China)
  14. COLCIENCIAS (Colombia)
  15. MSES (Croatia)
  16. CSF (Croatia)
  17. RPF (Cyprus)
  18. SENESCYT (Ecuador)
  19. MoER (Estonia)
  20. ERC IUT (Estonia)
  21. ERDF (Estonia)
  22. Academy of Finland (Finland)
  23. MEC (Finland)
  24. HIP (Finland)
  25. CEA (France)
  26. CNRS/IN2P3 (France)
  27. BMBF (Germany)
  28. DFG (Germany)
  29. HGF (Germany)
  30. GSRT (Greece)
  31. OTKA (Hungary)
  32. NIH (Hungary)
  33. DAE (India)
  34. DST (India)
  35. IPM (Iran)
  36. SFI (Ireland)
  37. INFN (Italy)
  38. MSIP (Republic of Korea)
  39. NRF (Republic of Korea)
  40. LAS (Lithuania)
  41. MOE (Malaysia)
  42. UM (Malaysia)
  43. BUAP (Mexico)
  44. CINVESTAV (Mexico)
  45. CONACYT (Mexico)
  46. LNS (Mexico)
  47. SEP (Mexico)
  48. UASLP-FAI (Mexico)
  49. MBIE (New Zealand)
  50. PAEC (Pakistan)
  51. MSHE (Poland)
  52. NSC (Poland)
  53. FCT (Portugal)
  54. JINR (Dubna)
  55. MON (Russia)
  56. RosAtom (Russia)
  57. RAS (Russia)
  58. RFBR (Russia)
  59. RAEP (Russia)
  60. MESTD (Serbia)
  61. SEIDI (Spain)
  62. CPAN (Spain)
  63. PCTI (Spain)
  64. FEDER (Spain)
  65. MST (Taipei)
  66. ThEPCenter (Thailand)
  67. IPST (Thailand)
  68. STAR (Thailand)
  69. NSTDA (Thailand)
  70. TUBITAK (Turkey)
  71. TAEK (Turkey)
  72. NASU (Ukraine)
  73. SFFR (Ukraine)
  74. STFC (United Kingdom)
  75. DOE (U.S.A.)
  76. NSF (U.S.A.)
  77. Marie-Curie programme (European Union)
  78. European Research Council (European Union)
  79. Horizon Grant (European Union) [675440]
  80. Leventis Foundation
  81. A. P. Sloan Foundation
  82. Alexander von Humboldt Foundation
  83. Belgian Federal Science Policy Office
  84. Fonds pour la Formation a la Recherche dans l'Industrie et dans l'Agriculture (FRIA-Belgium)
  85. Agentschap voor Innovatie door Wetenschap en Technologie (IWT-Belgium)
  86. F.R.S.-FNRS (Belgium)
  87. FWO (Belgium) [30820817]
  88. Ministry of Education, Youth and Sports (MEYS) of the Czech Republic
  89. Council of Science and Industrial Research, India
  90. HOMING PLUS programme of the Foundation for Polish Science
  91. European Union, Regional Development Fund
  92. Mobility Plus programme of the Ministry of Science and Higher Education
  93. 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]
  94. National Priorities Research Program by Qatar National Research Fund
  95. Programa Estatal de Fomento de la Investigacion Cientifica y Tecnica de Excelencia Maria de Maeztu [MDM-2015-0509]
  96. Programa Severo Ochoa del Principado de Asturias
  97. Thalis programme
  98. Aristeia programme
  99. EU-ESF
  100. Greek NSRF
  101. Rachadapisek Sompot Fund for Postdoctoral Fellowship, Chulalongkorn University
  102. Chulalongkorn Academic into Its 2nd Century Project Advancement Project (Thailand)
  103. Welch Foundation (U.S.A.) [C-1845]
  104. Weston Havens Foundation (U.S.A.)
  105. Science and Technology Facilities Council [ST/K003542/1, ST/I003622/1, ST/J005479/1, ST/J004871/1, ST/N001273/1, ST/I505580/1, ST/K003542/1 GRID PP, ST/F007434/1, ST/M004775/1, ST/L005603/1] Funding Source: researchfish
  106. Direct For Mathematical & Physical Scien [1151640, 1508869] Funding Source: National Science Foundation
  107. STFC [ST/K003542/1, ST/L005603/1, ST/M004775/1, ST/I505580/1, ST/J004871/1, ST/N001273/1, ST/J005479/1, ST/I003622/1, ST/F007434/1, ST/N000242/1] Funding Source: UKRI

向作者/读者索取更多资源

A search for a new heavy particle decaying to a pair of vector bosons (WW or WZ) is presented using data from the CMS detector corresponding to an integrated luminosity of 35.9 fb(-1) collected in proton-proton collisions at a centre-of-mass energy of 13 TeV in 2016. One of the bosons is required to be a W boson decaying to e nu or mu nu, while the other boson is required to be reconstructed as a single massive jet with substructure compatible with that of a highly-energetic quark pair from a W or Z boson decay. The search is performed in the resonance mass range between 1.0 and 4.4 TeV. The largest deviation from the background-only hypothesis is observed for a mass near 1.4 TeV and corresponds to a local significance of 2.5 standard deviations. The result is interpreted as an upper bound on the resonance production cross section. Comparing the excluded cross section values and the expectations from theoretical calculations in the bulk graviton and heavy vector triplet models, spin-2 WW resonances with mass smaller than 1.07 TeV and spin-1 WZ resonances lighter than 3.05 TeV, respectively, are excluded at 95% confidence level.

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