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Phenomenology of general gauge mediation in light of a 125 GeV Higgs

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Abstract

We explore the phenomenology of the full General Gauge Mediation parameter space in the MSSM focusing on the consequences of having a fundamental Higgs around 125 GeV. Assuming GUT-complete structure of the hidden sector, we allow for deviations from the strict definition of gauge mediated SUSY-breaking coming from mild violations of messenger-parity and from extra couplings between the Higgs multiplets and the hidden sector. Relaxing the GUT assumption, our parameter space is defined by the property of having vanishing A-terms at the messenger scale. In this extended setup we focus on the possibility of splitting the SU(3) mass parameters of GGM. In all these scenarios we investigate the possible spectra, discussing to what extent having an Higgs mass around 125 GeV is constraining the GGM parameter space and what are the possible signatures at LHC.

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References

  1. P. Meade, N. Seiberg and D. Shih, General gauge mediation, Prog. Theor. Phys. Suppl. 177 (2009) 143 [arXiv:0801.3278] [INSPIRE].

    Article  ADS  MATH  Google Scholar 

  2. M. Buican, P. Meade, N. Seiberg and D. Shih, Exploring general gauge mediation, JHEP 03 (2009) 016 [arXiv:0812.3668] [INSPIRE].

    Article  MathSciNet  ADS  Google Scholar 

  3. G. Giudice and R. Rattazzi, Theories with gauge mediated supersymmetry breaking, Phys. Rept. 322 (1999) 419 [hep-ph/9801271] [INSPIRE].

    Article  ADS  Google Scholar 

  4. L.M. Carpenter, M. Dine, G. Festuccia and J.D. Mason, Implementing general gauge mediation, Phys. Rev. D 79 (2009) 035002 [arXiv:0805.2944] [INSPIRE].

    ADS  Google Scholar 

  5. L.M. Carpenter, Surveying the phenomenology of general gauge mediation, arXiv:0812.2051 [INSPIRE].

  6. A. Rajaraman, Y. Shirman, J. Smidt and F. Yu, Parameter space of general gauge mediation, Phys. Lett. B 678 (2009) 367 [arXiv:0903.0668] [INSPIRE].

    ADS  Google Scholar 

  7. S. Abel, M.J. Dolan, J. Jaeckel and V.V. Khoze, Phenomenology of pure general gauge mediation, JHEP 12 (2009) 001 [arXiv:0910.2674] [INSPIRE].

    Article  MathSciNet  ADS  Google Scholar 

  8. S. Abel, M.J. Dolan, J. Jaeckel and V.V. Khoze, Pure general gauge mediation for early LHC searches, JHEP 12 (2010) 049 [arXiv:1009.1164] [INSPIRE].

    Article  ADS  Google Scholar 

  9. M.J. Dolan, D. Grellscheid, J. Jaeckel, V.V. Khoze and P. Richardson, New constraints on gauge mediation and beyond from LHC SUSY searches at 7 TeV, JHEP 06 (2011) 095 [arXiv:1104.0585] [INSPIRE].

    Article  ADS  Google Scholar 

  10. D. Grellscheid, J. Jaeckel, V.V. Khoze, P. Richardson and C. Wymant, Direct SUSY searches at the LHC in the light of LEP Higgs bounds, JHEP 03 (2012) 078 [arXiv:1111.3365] [INSPIRE].

    Article  ADS  Google Scholar 

  11. Y. Kats, P. Meade, M. Reece and D. Shih, The status of GMSB after 1/fb at the LHC, JHEP 02 (2012) 115 [arXiv:1110.6444] [INSPIRE].

    Article  ADS  Google Scholar 

  12. ATLAS collaboration, Observation of a new particle in the search for the standard model Higgs boson with the ATLAS detector at the LHC, Phys. Lett. B 716 (2012) 1 [arXiv:1207.7214] [INSPIRE].

  13. CMS collaboration, Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC, Phys. Lett. B 716 (2012) 30 [arXiv:1207.7235] [INSPIRE].

  14. P. Draper, P. Meade, M. Reece and D. Shih, Implications of a 125 GeV Higgs for the MSSM and low-scale SUSY breaking, Phys. Rev. D 85 (2012) 095007 [arXiv:1112.3068] [INSPIRE].

    ADS  Google Scholar 

  15. M.A. Ajaib, I. Gogoladze, F. Nasir and Q. Shafi, Revisiting mGMSB in Light of a 125 GeV Higgs, Phys. Lett. B 713 (2012) 462 [arXiv:1204.2856] [INSPIRE].

    ADS  Google Scholar 

  16. J. Jaeckel, V.V. Khoze and C. Wymant, Mass sum rules and the role of the messenger scale in general gauge mediation, JHEP 04 (2011) 126 [arXiv:1102.1589] [INSPIRE].

    Article  ADS  Google Scholar 

  17. J. Jaeckel, V.V. Khoze and C. Wymant, RG invariants, unification and the role of the messenger scale in general gauge mediation, JHEP 05 (2011) 132 [arXiv:1103.1843] [INSPIRE].

    Article  ADS  Google Scholar 

  18. G. Dvali, G. Giudice and A. Pomarol, The μ problem in theories with gauge mediated supersymmetry breaking, Nucl. Phys. B 478 (1996) 31 [hep-ph/9603238] [INSPIRE].

    Article  ADS  Google Scholar 

  19. C. Csáki, A. Falkowski, Y. Nomura and T. Volansky, New approach to the μ-Bμ problem of gauge-mediated supersymmetry breaking, Phys. Rev. Lett. 102 (2009) 111801 [arXiv:0809.4492] [INSPIRE].

    Article  ADS  Google Scholar 

  20. Z. Komargodski and N. Seiberg, μ and general gauge mediation, JHEP 03 (2009) 072 [arXiv:0812.3900] [INSPIRE].

    Article  ADS  Google Scholar 

  21. A. De Simone, R. Franceschini, G.F. Giudice, D. Pappadopulo and R. Rattazzi, Lopsided gauge mediation, JHEP 05 (2011) 112 [arXiv:1103.6033] [INSPIRE].

    Article  ADS  Google Scholar 

  22. R. Rattazzi and U. Sarid, Large tan β in gauge mediated SUSY breaking models, Nucl. Phys. B 501 (1997) 297 [hep-ph/9612464] [INSPIRE].

    Article  ADS  Google Scholar 

  23. Z. Chacko and E. Ponton, Yukawa deflected gauge mediation, Phys. Rev. D 66 (2002) 095004 [hep-ph/0112190] [INSPIRE].

    ADS  Google Scholar 

  24. Z. Chacko, E. Katz and E. Perazzi, Yukawa deflected gauge mediation in four dimensions, Phys. Rev. D 66 (2002) 095012 [hep-ph/0203080] [INSPIRE].

    ADS  Google Scholar 

  25. J.L. Evans, M. Ibe and T.T. Yanagida, Relatively heavy Higgs boson in more generic gauge mediation, Phys. Lett. B 705 (2011) 342 [arXiv:1107.3006] [INSPIRE].

    ADS  Google Scholar 

  26. J.L. Evans, M. Ibe, S. Shirai and T.T. Yanagida, A 125 GeV Higgs boson and muon g − 2 in more generic gauge mediation, Phys. Rev. D 85 (2012) 095004 [arXiv:1201.2611] [INSPIRE].

    ADS  Google Scholar 

  27. Z. Kang, T. Li, T. Liu, C. Tong and J.M. Yang, A heavy sm-like Higgs and a light stop from Yukawa-deflected gauge mediation, Phys. Rev. D 86 (2012) 095020 [arXiv:1203.2336] [INSPIRE].

    ADS  Google Scholar 

  28. N. Craig, S. Knapen, D. Shih and Y. Zhao, A complete model of low-scale gauge mediation, JHEP 03 (2013) 154 [arXiv:1206.4086] [INSPIRE].

    Article  ADS  Google Scholar 

  29. N. Craig, S. Knapen and D. Shih, General messenger Higgs mediation, arXiv:1302.2642 [INSPIRE].

  30. S. Dimopoulos and G. Giudice, Multimessenger theories of gauge mediated supersymmetry breaking, Phys. Lett. B 393 (1997) 72 [hep-ph/9609344] [INSPIRE].

    ADS  Google Scholar 

  31. R. Argurio and D. Redigolo, Tame D-tadpoles in gauge mediation, JHEP 01 (2013) 075 [arXiv:1206.7037] [INSPIRE].

    Article  ADS  Google Scholar 

  32. R. Dermisek and H.D. Kim, Radiatively generated maximal mixing scenario for the Higgs mass and the least fine tuned minimal supersymmetric standard model, Phys. Rev. Lett. 96 (2006) 211803 [hep-ph/0601036] [INSPIRE].

    Article  ADS  Google Scholar 

  33. R. Essig and J.-F. Fortin, The minimally tuned minimal supersymmetric standard model, JHEP 04 (2008) 073 [arXiv:0709.0980] [INSPIRE].

    Article  Google Scholar 

  34. N. Arkani-Hamed and S. Dimopoulos, Supersymmetric unification without low energy supersymmetry and signatures for fine-tuning at the LHC, JHEP 06 (2005) 073 [hep-th/0405159] [INSPIRE].

    Article  ADS  Google Scholar 

  35. G. Giudice and A. Romanino, Split supersymmetry, Nucl. Phys. B 699 (2004) 65 [Erratum ibid. B 706 (2005) 65–89] [hep-ph/0406088] [INSPIRE].

  36. N. Arkani-Hamed, S. Dimopoulos, G. Giudice and A. Romanino, Aspects of split supersymmetry, Nucl. Phys. B 709 (2005) 3 [hep-ph/0409232] [INSPIRE].

    Article  MathSciNet  ADS  Google Scholar 

  37. J.D. Wells, Implications of supersymmetry breaking with a little hierarchy between gauginos and scalars, hep-ph/0306127 [INSPIRE].

  38. N. Arkani-Hamed, A. Gupta, D.E. Kaplan, N. Weiner and T. Zorawski, Simply unnatural supersymmetry, arXiv:1212.6971 [INSPIRE].

  39. A. Arvanitaki, N. Craig, S. Dimopoulos and G. Villadoro, Mini-split, JHEP 02 (2013) 126 [arXiv:1210.0555] [INSPIRE].

    Article  ADS  Google Scholar 

  40. B. Allanach, SOFTSUSY: a program for calculating supersymmetric spectra, Comput. Phys. Commun. 143 (2002) 305 [hep-ph/0104145] [INSPIRE].

    Article  ADS  MATH  Google Scholar 

  41. S. Deser and B. Zumino, Broken supersymmetry and supergravity, Phys. Rev. Lett. 38 (1977) 1433 [INSPIRE].

    Article  ADS  Google Scholar 

  42. S.P. Martin, A supersymmetry primer, hep-ph/9709356 [INSPIRE].

  43. F. Brummer, S. Kraml and S. Kulkarni, Anatomy of maximal stop mixing in the MSSM, JHEP 08 (2012) 089 [arXiv:1204.5977] [INSPIRE].

    Article  ADS  Google Scholar 

  44. R. Barbieri and G. Giudice, Upper bounds on supersymmetric particle masses, Nucl. Phys. B 306 (1988) 63 [INSPIRE].

    Article  ADS  Google Scholar 

  45. B. de Carlos and J. Casas, One loop analysis of the electroweak breaking in supersymmetric models and the fine tuning problem, Phys. Lett. B 309 (1993) 320 [hep-ph/9303291] [INSPIRE].

  46. P. Ciafaloni and A. Strumia, Naturalness upper bounds on gauge mediated soft terms, Nucl. Phys. B 494 (1997) 41 [hep-ph/9611204] [INSPIRE].

    Article  ADS  Google Scholar 

  47. T. Kobayashi, Y. Nakai and R. Takahashi, Fine tuning in general gauge mediation, JHEP 01 (2010) 003 [arXiv:0910.3477] [INSPIRE].

    Article  ADS  Google Scholar 

  48. Z. Lalak and M. Lewicki, Fine-tuning in GGM and the 126 GeV Higgs particle, JHEP 05 (2013) 125 [arXiv:1302.6546] [INSPIRE].

    Article  ADS  Google Scholar 

  49. ALEPH, DELPHI, L3, OPAL, LEP Working Group for Higgs Boson Searches collaboration, S. Schael et al., Search for neutral MSSM Higgs bosons at LEP, Eur. Phys. J. C 47 (2006) 547 [hep-ex/0602042] [INSPIRE].

  50. ATLAS collaboration, Search for squarks and gluinos using final states with jets and missing transverse momentum with the ATLAS detector in \( \sqrt{s} \) = 7 TeV proton-proton collisions, Phys. Lett. B 710 (2012) 67 [arXiv:1109.6572] [INSPIRE].

  51. CMS collaboration, Search for supersymmetry at the LHC in events with jets and missing transverse energy, Phys. Rev. Lett. 107 (2011) 221804 [arXiv:1109.2352] [INSPIRE].

  52. D.E. Kaplan and M.D. Schwartz, Constraining light colored particles with event shapes, Phys. Rev. Lett. 101 (2008) 022002 [arXiv:0804.2477] [INSPIRE].

    Article  ADS  Google Scholar 

  53. OPAL collaboration, G. Abbiendi et al., Search for scalar top and scalar bottom quarks at LEP, Phys. Lett. B 545 (2002) 272 [Erratum ibid. B 548 (2002) 258] [hep-ex/0209026] [INSPIRE].

  54. ALEPH collaboration, A. Heister et al., Search for scalar quarks in e + e collisions at \( \sqrt{s} \) up to 209 GeV, Phys. Lett. B 537 (2002) 5 [hep-ex/0204036] [INSPIRE].

  55. DELPHI collaboration, J. Abdallah et al., Searches for supersymmetric particles in e + e collisions up to 208 GeV and interpretation of the results within the MSSM, Eur. Phys. J. C 31 (2003) 421 [hep-ex/0311019] [INSPIRE].

  56. Particle Data Group collaboration, C. Caso et al., Review of particle physics, Eur. Phys. J. C 3 (1998) 1 [INSPIRE].

  57. ALEPH collaboration, R. Barate et al., Search for supersymmetric particles in e + e collisions at \( \sqrt{s} \) up to 202 GeV and mass limit for the lightest neutralino, Phys. Lett. B 499 (2001) 67 [hep-ex/0011047] [INSPIRE].

  58. ALEPH collaboration, R. Barate et al., Search for gauge mediated SUSY breaking topologies at s (1/2) similar to 189 GeV, Eur. Phys. J. C 16 (2000) 71 [INSPIRE].

  59. ALEPH collaboration, D. Decamp et al., Searches for new particles in Z decays using the ALEPH detector, Phys. Rept. 216 (1992) 253 [INSPIRE].

  60. F. Mahmoudi, SuperIso v2.3: a program for calculating flavor physics observables in supersymmetry, Comput. Phys. Commun. 180 (2009) 1579 [arXiv:0808.3144] [INSPIRE].

    Article  ADS  Google Scholar 

  61. Heavy Flavor Averaging Group collaboration, E. Barberio et al., Averages of b-hadron and c-hadron properties at the end of 2007, arXiv:0808.1297 [INSPIRE].

  62. BaBar collaboration, B. Aubert et al., Measurement of branching fractions and CP and isospin asymmetries in BK * γ, arXiv:0808.1915 [INSPIRE].

  63. BELLE collaboration, M. Nakao et al., Measurement of the BK * γ branching fractions and asymmetries, Phys. Rev. D 69 (2004) 112001 [hep-ex/0402042] [INSPIRE].

  64. LHCb collaboration, Strong constraints on the rare decays B s → μ + μ and B 0 → μ + μ , Phys. Rev. Lett. 108 (2012) 231801 [arXiv:1203.4493] [INSPIRE].

  65. BaBar collaboration, B. Aubert et al., Observation of the semileptonic decays \( B\ \to\ {D^{*}}{\tau^{-}}\overline{\nu}\left( \tau \right) \) and evidence for \( B\ \to\ D{\tau^{-}}\overline{\nu}\left( \tau \right) \), Phys. Rev. Lett. 100 (2008) 021801 [arXiv:0709.1698] [INSPIRE].

  66. M. Antonelli et al., An evaluation of |V us | and precise tests of the standard model from world data on leptonic and semileptonic kaon decays, Eur. Phys. J. C 69 (2010) 399 [arXiv:1005.2323] [INSPIRE].

    Article  ADS  Google Scholar 

  67. T. Moroi, H. Murayama and M. Yamaguchi, Cosmological constraints on the light stable gravitino, Phys. Lett. B 303 (1993) 289 [INSPIRE].

    ADS  Google Scholar 

  68. A. de Gouvêa, T. Moroi and H. Murayama, Cosmology of supersymmetric models with low-energy gauge mediation, Phys. Rev. D 56 (1997) 1281 [hep-ph/9701244] [INSPIRE].

    ADS  Google Scholar 

  69. S. Dimopoulos, G. Giudice and A. Pomarol, Dark matter in theories of gauge mediated supersymmetry breaking, Phys. Lett. B 389 (1996) 37 [hep-ph/9607225] [INSPIRE].

    ADS  Google Scholar 

  70. T. Gherghetta, G. Giudice and A. Riotto, Nucleosynthesis bounds in gauge mediated supersymmetry breaking theories, Phys. Lett. B 446 (1999) 28 [hep-ph/9808401] [INSPIRE].

    ADS  Google Scholar 

  71. S. Dimopoulos, S.D. Thomas and J.D. Wells, Sparticle spectroscopy and electroweak symmetry breaking with gauge mediated supersymmetry breaking, Nucl. Phys. B 488 (1997) 39 [hep-ph/9609434] [INSPIRE].

    Article  ADS  Google Scholar 

  72. D. Green, A. Katz and Z. Komargodski, Direct gaugino mediation, Phys. Rev. Lett. 106 (2011) 061801 [arXiv:1008.2215] [INSPIRE].

    Article  ADS  Google Scholar 

  73. R. Auzzi and A. Giveon, The sparticle spectrum in minimal gaugino-gauge mediation, JHEP 10 (2010) 088 [arXiv:1009.1714] [INSPIRE].

    Article  ADS  Google Scholar 

  74. N. Arkani-Hamed, G.F. Giudice, M.A. Luty and R. Rattazzi, Supersymmetry breaking loops from analytic continuation into superspace, Phys. Rev. D 58 (1998) 115005 [hep-ph/9803290] [INSPIRE].

    ADS  Google Scholar 

  75. R. Argurio, M. Bertolini, G. Ferretti and A. Mariotti, Patterns of soft masses from general semi-direct gauge mediation, JHEP 03 (2010) 008 [arXiv:0912.0743] [INSPIRE].

    Article  ADS  Google Scholar 

  76. S.P. Martin, Generalized messengers of supersymmetry breaking and the sparticle mass spectrum, Phys. Rev. D 55 (1997) 3177 [hep-ph/9608224] [INSPIRE].

    ADS  Google Scholar 

  77. S. Ambrosanio, G.D. Kribs and S.P. Martin, Three body decays of selectrons and smuons in low-energy supersymmetry breaking models, Nucl. Phys. B 516 (1998) 55 [hep-ph/9710217] [INSPIRE].

  78. K. Kawagoe, T. Kobayashi, M.M. Nojiri and A. Ochi, Study of the gauge mediation signal with nonpointing photons at the CERN LHC, Phys. Rev. D 69 (2004) 035003 [hep-ph/0309031] [INSPIRE].

  79. P. Meade, M. Reece and D. Shih, Long-lived neutralino NLSPs, JHEP 10 (2010) 067 [arXiv:1006.4575] [INSPIRE].

    Article  ADS  Google Scholar 

  80. M. Park and Y. Zhao, Recovering particle masses from missing energy signatures with displaced tracks, arXiv:1110.1403 [INSPIRE].

  81. CMS collaboration, Search for long-lived particles decaying to photons and missing energy in proton-proton collisions at \( \sqrt{s} \) = 7 TeV, Phys. Lett. B 722 (2013) 273 [arXiv:1212.1838] [INSPIRE].

  82. CMS collaboration, Search for new physics in events with photons, jets and missing transverse energy in pp collisions at \( \sqrt{s} \) = 7 TeV, JHEP 03 (2013) 111 [arXiv:1211.4784] [INSPIRE].

  83. CMS collaboration, Search for supersymmetry in events with photons and missing energy, CMS-PAS-SUS-12-018 (2012).

  84. ATLAS collaboration, Search for diphoton events with large missing transverse momentum in 7 TeV proton-proton collision data with the ATLAS detector, Phys. Lett. B 718 (2012) 411 [arXiv:1209.0753] [INSPIRE].

  85. Y. Nomura, Supersymmetric unification in warped space, hep-ph/0410348 [INSPIRE].

  86. J. Casas, A. Lleyda and C. Muñoz, Strong constraints on the parameter space of the MSSM from charge and color breaking minima, Nucl. Phys. B 471 (1996) 3 [hep-ph/9507294] [INSPIRE].

  87. J.L. Evans, D.E. Morrissey and J.D. Wells, Vacuum stability with tachyonic boundary Higgs masses in no-scale supersymmetry or gaugino mediation, Phys. Rev. D 80 (2009) 095011 [arXiv:0812.3874] [INSPIRE].

    ADS  Google Scholar 

  88. J.R. Ellis, J. Giedt, O. Lebedev, K. Olive and M. Srednicki, Against tachyophobia, Phys. Rev. D 78 (2008) 075006 [arXiv:0806.3648] [INSPIRE].

    ADS  Google Scholar 

  89. M. Carena, G. Nardini, M. Quirós and C. Wagner, The baryogenesis window in the MSSM, Nucl. Phys. B 812 (2009) 243 [arXiv:0809.3760] [INSPIRE].

    Article  ADS  Google Scholar 

  90. W. Buchmüller, J. Kersten and K. Schmidt-Hoberg, Squarks and sleptons between branes and bulk, JHEP 02 (2006) 069 [hep-ph/0512152] [INSPIRE].

  91. J.L. Evans, D.E. Morrissey and J.D. Wells, Higgs boson exempt no-scale supersymmetry and its collider and cosmology implications, Phys. Rev. D 75 (2007) 055017 [hep-ph/0611185] [INSPIRE].

  92. W. Buchmüller, L. Covi, J. Kersten and K. Schmidt-Hoberg, Dark matter from gaugino mediation, JCAP 11 (2006) 007 [hep-ph/0609142] [INSPIRE].

  93. S.P. Martin and P. Ramond, Sparticle spectrum constraints, Phys. Rev. D 48 (1993) 5365 [hep-ph/9306314] [INSPIRE].

  94. ATLAS collaboration, Search for supersymmetry in final states with jets, missing transverse momentum and a Z boson at \( \sqrt{s} \) = 8 TeV with the ATLAS detector, ATLAS-CONF-2012-152 (2012).

  95. CMS collaboration, Search for physics beyond the standard model in events with a Z boson, jets and missing transverse energy in pp collisions at \( \sqrt{s} \) = 7 TeV, Phys. Lett. B 716 (2012) 260 [arXiv:1204.3774] [INSPIRE].

  96. A. Katz and B. Tweedie, Signals of a sneutrino (N)LSP at the LHC, Phys. Rev. D 81 (2010) 035012 [arXiv:0911.4132] [INSPIRE].

    ADS  Google Scholar 

  97. L. Covi and S. Kraml, Collider signatures of gravitino dark matter with a sneutrino NLSP, JHEP 08 (2007) 015 [hep-ph/0703130] [INSPIRE].

  98. J.R. Ellis, K.A. Olive and Y. Santoso, Sneutrino NLSP scenarios in the NUHM with gravitino dark matter, JHEP 10 (2008) 005 [arXiv:0807.3736] [INSPIRE].

    Article  ADS  Google Scholar 

  99. A.D. Medina, N.R. Shah and C.E. Wagner, A heavy Higgs and a light sneutrino NLSP in the MSSM with enhanced SU(2) D-terms, Phys. Rev. D 80 (2009) 015001 [arXiv:0904.1625] [INSPIRE].

    ADS  Google Scholar 

  100. Y. Santoso, Signatures of sneutrino NLSP in gravitino dark matter scenario at the LHC, AIP Conf. Proc. 1200 (2010) 494 [arXiv:0909.4742] [INSPIRE].

    Article  ADS  Google Scholar 

  101. A. Katz and B. Tweedie, Leptophilic signals of a sneutrino (N)LSP and flavor biases from flavor-blind SUSY, Phys. Rev. D 81 (2010) 115003 [arXiv:1003.5664] [INSPIRE].

    ADS  Google Scholar 

  102. J.F. Gunion and H.E. Haber, The CP conserving two Higgs doublet model: the approach to the decoupling limit, Phys. Rev. D 67 (2003) 075019 [hep-ph/0207010] [INSPIRE].

    ADS  Google Scholar 

  103. ATLAS collaboration, Search for supersymmetry in events with four or more leptons in 13 fb −1 pp collisions at \( \sqrt{s} \) = 8 TeV with the ATLAS detector, ATLAS-CONF-2012-153 (2012).

  104. CMS collaboration, A search for anomalous production of events with three or more leptons using 9.2 fb −1, CMS-PAS-SUS-12-026 (2012).

  105. ATLAS collaboration, Search for direct production of charginos and neutralinos in events with three leptons and missing transverse momentum in 13.0 fb −1 of pp collisions at \( \sqrt{s} \) = 8TeV with the ATLAS detector, ATLAS-CONF-2012-154 (2012).

  106. G. Bozzi, B. Fuks and M. Klasen, Slepton production in polarized hadron collisions, Phys. Lett. B 609 (2005) 339 [hep-ph/0411318] [INSPIRE].

    ADS  Google Scholar 

  107. K. De Causmaecker, J. D’Hondt, B. Fuks, K. Mawatari, A. Mariotti, C. Petersson and D. Redigolo, Multi-lepton final states from selectron-smuon co-NLSP in GMBS, work in progress.

  108. S. Raby, Gauge mediated SUSY breaking with a gluino LSP, Phys. Lett. B 422 (1998) 158 [hep-ph/9712254] [INSPIRE].

    ADS  Google Scholar 

  109. ATLAS collaboration, Searches for heavy long-lived sleptons and R-hadrons with the ATLAS detector in pp collisions at \( \sqrt{s} \) = 7 TeV, Phys. Lett. B 720 (2013) 277 [arXiv:1211.1597] [INSPIRE].

  110. CMS collaboration, Search for stopped long-lived particles produced in pp collisions at \( \sqrt{s} \) = 7 TeV, JHEP 08 (2012) 026 [arXiv:1207.0106] [INSPIRE].

  111. CMS collaboration, Search for heavy long-lived charged particles in pp collisions at \( \sqrt{s} \) = 7 TeV, Phys. Lett. B 713 (2012) 408 [arXiv:1205.0272] [INSPIRE].

  112. ATLAS collaboration, Search for squarks and gluinos with the ATLAS detector using final states with jets and missing transverse momentum and 5.8 fb −1 of \( \sqrt{s} \) = 8 TeV proton-proton collision data, ATLAS-CONF-2012-109 (2012).

  113. CMS collaboration, Search for new physics in the multijet and missing transverse momentum final state in proton-proton collisions at \( \sqrt{s} \) = 7 TeV, Phys. Rev. Lett. 109 (2012) 171803 [arXiv:1207.1898] [INSPIRE].

  114. T. Jittoh, J. Sato, T. Shimomura and M. Yamanaka, Long life stau in the minimal supersymmetric standard model, Phys. Rev. D 73 (2006) 055009 [Erratum ibid. D 87 (2013) 019901] [hep-ph/0512197] [INSPIRE].

  115. M. Citron et al., The End of the CMSSM coannihilation strip is nigh, arXiv:1212.2886 [INSPIRE].

  116. G.D. Kribs, A. Martin and T.S. Roy, Supersymmetry with a chargino NLSP and gravitino LSP, JHEP 01 (2009) 023 [arXiv:0807.4936] [INSPIRE].

    Article  ADS  Google Scholar 

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Grajek, P., Mariotti, A. & Redigolo, D. Phenomenology of general gauge mediation in light of a 125 GeV Higgs. J. High Energ. Phys. 2013, 109 (2013). https://doi.org/10.1007/JHEP07(2013)109

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