4.7 Article

Search for long-lived stopped R-hadrons decaying out of time with pp collisions using the ATLAS detector

Journal

PHYSICAL REVIEW D
Volume 88, Issue 11, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.88.112003

Keywords

-

Funding

  1. ANPCyT, Argentina
  2. YerPhI, Armenia
  3. ARC, Australia
  4. BMWF, 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. Lundbeck Foundation, Denmark
  25. EPLANET
  26. ERC
  27. NSRF
  28. European Union
  29. IN2P3-CNRS, France
  30. CEA-DSM/IRFU, France
  31. GNSF, Georgia
  32. BMBF, Germany
  33. DFG, Germany
  34. HGF, Germany
  35. MPG, Germany
  36. AvH Foundation, Germany
  37. GSRT, Greece
  38. NSRF, Greece
  39. ISF, Israel
  40. MINERVA, Israel
  41. GIF, Israel
  42. DIP, Israel
  43. Benoziyo Center, Israel
  44. INFN, Italy
  45. MEXT, Japan
  46. JSPS, Japan
  47. CNRST, Morocco
  48. FOM, Netherlands
  49. NWO, Netherlands
  50. BRF, Norway
  51. RCN, Norway
  52. MNiSW, Poland
  53. GRICES, Portugal
  54. FCT, Portugal
  55. MNE/IFA, Romania
  56. MES of Russia
  57. ROSATOM
  58. Russian Federation
  59. JINR
  60. MSTD, Serbia
  61. MSSR, Slovakia
  62. ARRS, Slovenia
  63. MIZS, Slovenia
  64. DST/NRF, South Africa
  65. MINECO, Spain
  66. SRC, Sweden
  67. Wallenberg Foundation, Sweden
  68. SER, Switzerland
  69. SNSF, Switzerland
  70. Canton of Bern, Switzerland
  71. Canton of Geneva, Switzerland
  72. NSC, Taiwan
  73. TAEK, Turkey
  74. STFC, United Kingdom
  75. Royal Society, United Kingdom
  76. Leverhulme Trust, United Kingdom
  77. DOE, United States of America
  78. NSF, United States of America
  79. ICREA Funding Source: Custom
  80. STFC [ST/L001195/1, ST/F00754X/1, ST/H001093/1, ST/K003496/1, ST/K501840/1, ST/K000640/1, ST/M000753/1, ST/K50208X/1, ST/F007418/1, PP/E002757/1, ST/H00095X/1, ST/K000705/1, ST/K000039/1, ST/J501074/1, ST/J500641/1, ST/I000119/1, ST/J005460/1, PP/E003087/1, ST/I000186/1, ST/L003112/1, ST/K001388/1, ST/J002798/1, ST/K001329/1, ST/M001431/1, ST/I505756/1, ST/H00100X/1, ST/J004936/1, ST/L001144/1, ST/H00100X/2, PP/E000347/1, ST/K001337/1, ST/K003437/1, ST/I003533/1, PP/E003699/1, ST/M001512/1, ST/K00137X/1, ST/K00073X/1, ST/J005541/1, ST/K001248/1, ST/H001093/2, ST/K00140X/1, ST/F007337/1, ST/H001042/2, ST/J004944/1, ST/L003325/1, ST/K003895/1, PP/E003699/2, ST/L00352X/1, ST/J005568/1, ST/M000761/1, ST/J005576/1, ST/H001069/2, ST/J004979/1, ST/K000713/1, ST/M000664/1, ST/L006111/1, ST/L000970/1, ST/G006717/1, ST/K001361/1, ST/H00095X/2, ST/L001004/1, ST/I006080/1, PP/E000487/1, ST/G502320/1, ST/J004804/1, ST/K003658/1, ST/J004928/1, PP/E000355/1, ST/K000659/1, ST/I005803/1, ST/H001042/1, ST/I005811/1] Funding Source: UKRI
  81. Science and Technology Facilities Council [ST/J004928/1, ST/I006080/1, ST/I005811/1, ST/L003325/1, PP/E000347/1, ST/K001337/1 ATLAS, ST/J005568/1, ST/I000186/1, ST/K001388/1, ST/K003496/1, ST/K001310/1 LHCb Upgrades, ST/J005576/1, ST/K000705/1, ST/K000713/1, ST/K001361/1 LHCb Upgrades, ST/L003112/1, ST/L00352X/1, ST/H001042/1, ST/H001042/2, ST/H001093/1, ST/K001361/1, ST/K501840/1, ST/K001337/1, ST/K001264/1 ATLAS, ST/H00095X/2, ST/I000119/1, ST/I005803/1 GRIDPP, ST/M000761/1, ST/K001248/1, ST/K001361/1 ATLAS, ST/K00140X/1 ATLAS, ST/K001329/1 ATLAS, PP/E000487/1, ST/M001474/1, ST/M000664/1, ST/J501074/1, ST/K003658/1, ST/J004804/1, ST/I005803/1, ST/K001310/1 ATLAS, ST/K001361/1 MINOS/MINOS+, ST/H001069/2, ST/L001004/1, ST/M001512/1, ST/M001431/1, PP/E003699/1, ST/G502320/1, ST/L001209/1 ATLAS Upgrades, ST/K00137X/1, ST/K501840/1 GRIDPP, ST/L001195/1, ST/H00095X/1, ST/H001093/2, ST/K000039/1, ST/K003437/1 GRIDPP, ST/J004944/1, ST/K001418/1, ST/K003895/1, ATLAS, ST/K001329/1, ST/K00140X/1, ST/K001426/1 ATLAS, ST/K001310/1 LHCb, ST/J004928/1 ATLAS Upgrade, ST/K001361/1 LHCb, ST/L000970/1, ST/F007418/1, ST/H00100X/1, ST/J002798/1, ST/K50208X/1, PP/E000355/1, ST/K003496/1 GRIDPP, ST/K001361/1 ATLAS Upgrades, PP/E002757/1, ST/F007337/1, ST/K001310/1 ATLAS Upgrades, ST/I003533/1, ST/I505756/1, ST/J004979/1, ST/K00073X/1, ST/J005460/1, GRIDPP, PP/E003699/2, PP/E003087/1, ST/H00100X/2, ST/L000970/1 ATLAS Upgrade, ST/K003658/1 GRIDPP, ST/K003437/1, ST/G006717/1, ST/J004936/1, ST/K001310/1, ST/L006111/1, ST/F00754X/1, ST/J005541/1, ST/J500641/1, ST/L001144/1, ST/K000659/1] Funding Source: researchfish
  82. Direct For Mathematical & Physical Scien
  83. Division Of Physics [1206092, 1119200] Funding Source: National Science Foundation

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An updated search is performed for gluino, top squark, or bottom squark R-hadrons that have come to rest within the ATLAS calorimeter, and decay at some later time to hadronic jets and a neutralino, using 5.0 and 22.9 fb(-1) of pp collisions at 7 and 8 TeV, respectively. Candidate decay events are triggered in selected empty bunch crossings of the LHC in order to remove pp collision backgrounds. Selections based on jet shape and muon system activity are applied to discriminate signal events from cosmic ray and beam-halo muon backgrounds. In the absence of an excess of events, improved limits are set on gluino, stop, and sbottom masses for different decays, lifetimes, and neutralino masses. With a neutralino of mass 100 GeV, the analysis excludes gluinos with mass below 832 GeV (with an expected lower limit of 731 GeV), for a gluino lifetime between 10 mu s and 1000 s in the generic R-hadron model with equal branching ratios for decays to q (q) over bar(chi) over tilde (0) and g (chi) over tilde (0). Under the same assumptions for the neutralino mass and squark lifetime, top squarks and bottom squarks in the Regge R-hadron model are excluded with masses below 379 and 344 GeV, respectively.

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