4.7 Article

Search for long-lived particles that decay into final states containing two electrons or two muons in proton-proton collisions at √s=8Tev

期刊

PHYSICAL REVIEW D
卷 91, 期 5, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.91.052012

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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. MoER (Estonia)
  19. ERC IUT (Estonia)
  20. ERDF (Estonia)
  21. Academy of Finland (Finland)
  22. MEC (Finland)
  23. HIP (Finland)
  24. CEA (France)
  25. CNRS/IN2P3 (France)
  26. BMBF (Germany)
  27. DFG (Germany)
  28. HGF (Germany)
  29. GSRT (Greece)
  30. OTKA (Hungary)
  31. NIH (Hungary)
  32. DAE (India)
  33. DST (India)
  34. IPM (Iran)
  35. SFI (Ireland)
  36. INFN (Italy)
  37. MSIP (Republic of Korea)
  38. NRF (Republic of Korea)
  39. LAS (Lithuania)
  40. MOE (Malaysia)
  41. UM (Malaysia)
  42. CINVESTAV (Mexico)
  43. CONACYT (Mexico)
  44. SEP (Mexico)
  45. UASLP-FAI (Mexico)
  46. MBIE (New Zealand)
  47. PAEC (Pakistan)
  48. MSHE (Poland)
  49. NSC (Poland)
  50. FCT (Portugal)
  51. JINR (Dubna)
  52. MON (Russia)
  53. RosAtom (Russia)
  54. RAS (Russia)
  55. RFBR (Russia)
  56. MESTD (Serbia)
  57. SEIDI (Spain)
  58. CPAN (Spain)
  59. Swiss Funding Agencies (Switzerland)
  60. MST (Taipei)
  61. ThEPCenter (Thailand)
  62. IPST (Thailand)
  63. STAR (Thailand)
  64. NSTDA (Thailand)
  65. TUBITAK (Turkey)
  66. TAEK (Turkey)
  67. NASU (Ukraine)
  68. SFFR (Ukraine)
  69. STFC (United Kingdom)
  70. DOE (USA)
  71. NSF (USA)
  72. Marie Curie program (European Union)
  73. European Research Council (European Union)
  74. EPLANET (European Union)
  75. Leventis Foundation
  76. A. P. Sloan Foundation
  77. Alexander von Humboldt Foundation
  78. Belgian Federal Science Policy Office
  79. Fonds pour la Formation a la Recherche dans l'Industrie et dans l'Agriculture (FRIA Belgium)
  80. Agentschap voor Innovatie door Wetenschap en Technologie (IWT Belgium)
  81. Ministry of Education, Youth and Sports (MEYS) of the Czech Republic
  82. Council of Science and Industrial Research, India
  83. HOMING PLUS program of Foundation for Polish Science
  84. European Union, Regional Development Fund
  85. Compagnia di San Paolo (Torino)
  86. Consorzio per la Fisica (Trieste)
  87. MIUR (Italy) [20108T4XTM]
  88. Thalis programme
  89. Aristeia programme
  90. EU-ESF
  91. Greek NSRF
  92. National Priorities Research Program by Qatar National Research Fund
  93. Direct For Mathematical & Physical Scien
  94. Division Of Physics [1151640, 1306951, 1120138, 1314131] Funding Source: National Science Foundation
  95. Division Of Physics
  96. Direct For Mathematical & Physical Scien [1211067, 1205960, 0847443] Funding Source: National Science Foundation
  97. Science and Technology Facilities Council [ST/L00609X/1 GRIDPP, ST/K001256/1, ST/J005665/1, ST/L00609X/1, ST/N000250/1, ST/M005356/1 GRIDPP, ST/J004901/1, ST/L005603/1, ST/K003542/1, ST/K003844/1, ST/K001604/1, ST/J50094X/1, ST/M005356/1, ST/I005912/1, ST/I005912/1 GRIDPP, ST/I505580/1, ST/K001639/1, CMS, ST/K003844/1 GRIDPP, GRIDPP, ST/M004775/1] Funding Source: researchfish
  98. STFC [ST/H00081X/2, ST/K001604/1, ST/K003844/1, ST/M005356/1, ST/K003542/1, ST/J004901/1, ST/M004775/1, ST/L00609X/1, ST/K001639/1, ST/L005603/1, ST/J50094X/1, ST/I005912/1, ST/I505580/1, ST/J005665/1] Funding Source: UKRI

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A search is performed for long-lived particles that decay into final states that include a pair of electrons or a pair of muons. The experimental signature is a distinctive topology consisting of a pair of charged leptons originating from a displaced secondary vertex. Events corresponding to an integrated luminosity of 19.6 (20.5) fb(-1) in the electron (muon) channel were collected with the CMS detector at the CERN LHC in proton-proton collisions at root s TeV. No significant excess is observed above standard model expectations. Upper limits on the product of the cross section and branching fraction of such a signal are presented as a function of the long-lived particle's mean proper decay length. The limits are presented in an approximately model-independent way, allowing them to be applied to a wide class of models yielding the above topology. Over much of the investigated parameter space, the limits obtained are the most stringent to date. In the specific case of a model in which a Higgs boson in the mass range 125-1000 GeV/c(2) decays into a pair of long-lived neutral bosons in the mass range 20-350 GeV= c(2), each of which can then decay to dileptons, the upper limits obtained are typically in the range 0.2-10 fb for mean proper decay lengths of the long-lived particles in the range 0.01-100 cm. In the case of the lowest Higgs mass considered (125 GeV/c(2)), the limits are in the range 2-50 fb. These limits are sensitive to Higgs boson branching fractions as low as 10(-1).

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