Towards precise predictions for Higgs-boson production in the MSSM
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  • 作者:E. Bagnaschi (1) (2)
    R.V. Harlander (3)
    S. Liebler (4)
    H. Mantler (5)
    P. Slavich (1) (2)
    A. Vicini (6)

    1. LPTHE
    ; UPMC Universit茅 Paris 06 ; Sorbonne Universit茅s ; 4 Place Jussieu ; F-75252 ; Paris ; France
    2. LPTHE
    ; CNRS ; 4 Place Jussieu ; F-75252 ; Paris ; France
    3. Fachbereich C
    ; Bergische Universit盲t Wuppertal ; Gau脽stra脽e 20 ; D-42119 ; Wuppertal ; Germany
    4. Universit盲t Hamburg
    ; Luruper Chaussee 149 ; D-22761 ; Hamburg ; Germany
    5. CERN
    ; Theory Division ; CH-1211 ; Geneva 23 ; Switzerland
    6. Dipartimento di Fisica
    ; Universit脿 di Milano and INFN ; Sezione di Milano ; Via Celoria 16 ; I-20133 ; Milano ; Italy
  • 关键词:Higgs Physics ; Supersymmetric Standard Model
  • 刊名:Journal of High Energy Physics
  • 出版年:2014
  • 出版时间:June 2014
  • 年:2014
  • 卷:2014
  • 期:6
  • 全文大小:2,182 KB
  • 参考文献: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: pp. 1
    Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC. Phys. Lett. B 716: pp. 30
    1. LHC Higgs Cross Section Working Group collaboration, S. Dittmaier, C. Mariotti, G. Passarino and R. Tanaka eds., / Handbook of LHC Higgs cross sections: 1. Inclusive observables, CERN-2011-002 [arXiv:1101.0593] [INSPIRE].
    2. LHC Higgs Cross Section Working Group collaboration, S. Dittmaier, C. Mariotti, G. Passarino and R. Tanaka eds., / Handbook of LHC Higgs cross sections: 2. Differential distributions, CERN-2012-002 [arXiv:1201.3084] [INSPIRE].
    3. LHC Higgs Cross Section Working Group collaboration, S. Heinemeyer, C. Mariotti, G. Passarino and R. Tanaka eds., / Handbook of LHC Higgs cross sections: 3. Higgs properties, CERN-2013-004 [7.1347" class="a-plus-plus">arXiv:1307.1347] [7.1347" class="a-plus-plus">INSPIRE].
    4. Georgi, HM, Glashow, SL, Machacek, ME, Nanopoulos, DV (1978) Higgs bosons from two gluon annihilation in proton proton collisions. Phys. Rev. Lett. 40: pp. 692
    5. Dawson, S (1991) Radiative corrections to Higgs boson production. Nucl. Phys. B 359: pp. 283
    6. Djouadi, A, Spira, M, Zerwas, PM (1991) Production of Higgs bosons in proton colliders: QCD corrections. Phys. Lett. B 264: pp. 440
    7. Spira, M, Djouadi, A, Graudenz, D, Zerwas, PM (1995) Higgs boson production at the LHC. Nucl. Phys. B 453: pp. 17
    8. Harlander, R, Kant, P (2005) Higgs production and decay: analytic results at next-to-leading order QCD. JHEP 12: pp. 015
    9. Anastasiou, C, Beerli, S, Bucherer, S, Daleo, A, Kunszt, Z (2007) Two-loop amplitudes and master integrals for the production of a Higgs boson via a massive quark and a scalar-quark loop. JHEP 01: pp. 082
    10. Aglietti, U, Bonciani, R, Degrassi, G, Vicini, A (2007) Analytic results for virtual QCD corrections to Higgs production and decay. JHEP 01: pp. 021
    11. Bonciani, R, Degrassi, G, Vicini, A (2007) Scalar particle contribution to Higgs production via gluon fusion at NLO. JHEP 11: pp. 095
    12. Harlander, RV (2000) Virtual corrections to gg 鈫?H to two loops in the heavy top limit. Phys. Lett. B 492: pp. 74
    13. Catani, S, Florian, D, Grazzini, M (2001) Higgs production in hadron collisions: soft and virtual QCD corrections at NNLO. JHEP 05: pp. 025
    14. Harlander, RV, Kilgore, WB (2001) Soft and virtual corrections to pp 鈫?H + X at NNLO. Phys. Rev. D 64: pp. 013015
    15. Harlander, RV, Kilgore, WB (2002) Next-to-next-to-leading order Higgs production at hadron colliders. Phys. Rev. Lett. 88: pp. 201801
    16. Ravindran, V, Smith, J, Neerven, WL (2003) NNLO corrections to the total cross-section for Higgs boson production in hadron hadron collisions. Nucl. Phys. B 665: pp. 325
    17. Anastasiou, C, Melnikov, K (2002) Higgs boson production at hadron colliders in NNLO QCD. Nucl. Phys. B 646: pp. 220
    18. Marzani, S, Ball, RD, Duca, V, Forte, S, Vicini, A (2008) Higgs production via gluon-gluon fusion with finite top mass beyond next-to-leading order. Nucl. Phys. B 800: pp. 127
    19. Harlander, RV, Ozeren, KJ (2009) Top mass effects in Higgs production at next-to-next-to-leading order QCD: virtual corrections. Phys. Lett. B 679: pp. 467
    20. Harlander, RV, Ozeren, KJ (2009) Finite top mass effects for hadronic Higgs production at next-to-next-to-leading order. JHEP 11: pp. 088
    21. Pak, A, Rogal, M, Steinhauser, M (2009) Virtual three-loop corrections to Higgs boson production in gluon fusion for finite top quark mass. Phys. Lett. B 679: pp. 473
    22. Pak, A, Rogal, M, Steinhauser, M (2010) Finite top quark mass effects in NNLO Higgs boson production at LHC. JHEP 02: pp. 025
    23. Harlander, RV, Mantler, H, Marzani, S, Ozeren, KJ (2010) Higgs production in gluon fusion at next-to-next-to-leading order QCD for finite top mass. Eur. Phys. J. C 66: pp. 359
    24. Kr盲mer, M, Laenen, E, Spira, M (1998) Soft gluon radiation in Higgs boson production at the LHC. Nucl. Phys. B 511: pp. 523
    25. Catani, S, Florian, D, Grazzini, M, Nason, P (2003) Soft gluon resummation for Higgs boson production at hadron colliders. JHEP 07: pp. 028
    26. Idilbi, A, Ji, X-d, Ma, J-P, Yuan, F (2006) Threshold resummation for Higgs production in effective field theory. Phys. Rev. D 73: pp. 077501
    27. Idilbi, A, Ji, X-d, Yuan, F (2006) Resummation of threshold logarithms in effective field theory for DIS, Drell-Yan and Higgs production. Nucl. Phys. B 753: pp. 42
    28. Ahrens, V, Becher, T, Neubert, M, Yang, LL (2009) Renormalization-group improved prediction for Higgs production at hadron colliders. Eur. Phys. J. C 62: pp. 333
    29. Moch, S, Vogt, A (2005) Higher-order soft corrections to lepton pair and Higgs boson production. Phys. Lett. B 631: pp. 48
    30. Ravindran, V (2006) Higher-order threshold effects to inclusive processes in QCD. Nucl. Phys. B 752: pp. 173
    31. Ball, RD, Bonvini, M, Forte, S, Marzani, S, Ridolfi, G (2013) Higgs production in gluon fusion beyond NNLO. Nucl. Phys. B 874: pp. 746
    32. Buehler, S, Lazopoulos, A (2013) Scale dependence and collinear subtraction terms for Higgs production in gluon fusion at N3LO. JHEP 10: pp. 096
    33. C. Anastasiou et al., / Higgs boson gluon-fusion production at threshold in N3LO QCD, arXiv:1403.4616 [INSPIRE].
    34. Djouadi, A, Gambino, P (1994) Leading electroweak correction to Higgs boson production at proton colliders. Phys. Rev. Lett. 73: pp. 2528
    35. Djouadi, A, Gambino, P, Kniehl, BA (1998) Two loop electroweak heavy fermion corrections to Higgs boson production and decay. Nucl. Phys. B 523: pp. 17
    36. Aglietti, U, Bonciani, R, Degrassi, G, Vicini, A (2004) Two loop light fermion contribution to Higgs production and decays. Phys. Lett. B 595: pp. 432
    37. Aglietti, U, Bonciani, R, Degrassi, G, Vicini, A (2004) Master integrals for the two-loop light fermion contributions to gg 鈫?H and H 鈫?纬纬. Phys. Lett. B 600: pp. 57
    38. Degrassi, G, Maltoni, F (2004) Two-loop electroweak corrections to Higgs production at hadron colliders. Phys. Lett. B 600: pp. 255
    39. Actis, S, Passarino, G, Sturm, C, Uccirati, S (2008) NLO electroweak corrections to Higgs boson production at hadron colliders. Phys. Lett. B 670: pp. 12
    40. Actis, S, Passarino, G, Sturm, C, Uccirati, S (2009) NNLO computational techniques: the cases H 鈫?纬纬 and H 鈫?gg. Nucl. Phys. B 811: pp. 182
    41. Bonciani, R, Degrassi, G, Vicini, A (2011) On the generalized harmonic polylogarithms of one complex variable. Comput. Phys. Commun. 182: pp. 1253
    42. Anastasiou, C, Boughezal, R, Petriello, F (2009) Mixed QCD-electroweak corrections to Higgs boson production in gluon fusion. JHEP 04: pp. 003
    43. Dawson, S, Djouadi, A, Spira, M (1996) QCD corrections to SUSY Higgs production: the role of squark loops. Phys. Rev. Lett. 77: pp. 16
    44. M眉hlleitner, M, Spira, M (2008) Higgs boson production via gluon fusion: squark loops at NLO QCD. Nucl. Phys. B 790: pp. 1
    45. Anastasiou, C, Beerli, S, Daleo, A (2008) The two-loop QCD amplitude gg 鈫?h, H in the minimal supersymmetric standard model. Phys. Rev. Lett. 100: pp. 241806
    46. M. M眉hlleitner, H. Rzehak and M. Spira, / SUSY-QCD corrections to MSSM Higgs boson production via gluon fusion, PoS(RADCOR2009)043 [arXiv:1001.3214] [INSPIRE].
    47. Harlander, RV, Steinhauser, M (2003) Hadronic Higgs production and decay in supersymmetry at next-to-leading order. Phys. Lett. B 574: pp. 258
    48. Harlander, RV, Steinhauser, M (2004) Supersymmetric Higgs production in gluon fusion at next-to-leading order. JHEP 09: pp. 066
    49. Degrassi, G, Slavich, P (2008) On the NLO QCD corrections to Higgs production and decay in the MSSM. Nucl. Phys. B 805: pp. 267
    50. Harlander, RV, Hofmann, F (2006) Pseudo-scalar Higgs production at next-to-leading order SUSY-QCD. JHEP 03: pp. 050
    51. Degrassi, G, Vita, S, Slavich, P (2011) NLO QCD corrections to pseudoscalar Higgs production in the MSSM. JHEP 08: pp. 128
    52. Degrassi, G, Slavich, P (2010) NLO QCD bottom corrections to Higgs boson production in the MSSM. JHEP 11: pp. 044
    53. Harlander, RV, Hofmann, F, Mantler, H (2011) Supersymmetric Higgs production in gluon fusion. JHEP 02: pp. 055
    54. Degrassi, G, Vita, S, Slavich, P (2012) On the NLO QCD corrections to the production of the heaviest neutral Higgs scalar in the MSSM. Eur. Phys. J. C 72: pp. 2032
    55. Chetyrkin, KG, Kniehl, BA, Steinhauser, M, Bardeen, WA (1998) Effective QCD interactions of CP odd Higgs bosons at three loops. Nucl. Phys. B 535: pp. 3
    56. Harlander, RV, Kilgore, WB (2002) Production of a pseudoscalar Higgs boson at hadron colliders at next-to-next-to leading order. JHEP 10: pp. 017
    57. Anastasiou, C, Melnikov, K (2003) Pseudoscalar Higgs boson production at hadron colliders in NNLO QCD. Phys. Rev. D 67: pp. 037501
    58. Caola, F, Marzani, S (2011) Finite fermion mass effects in pseudoscalar Higgs production via gluon-gluon fusion. Phys. Lett. B 698: pp. 275
    59. Pak, A, Rogal, M, Steinhauser, M (2011) Production of scalar and pseudo-scalar Higgs bosons to next-to-next-to-leading order at hadron colliders. JHEP 09: pp. 088
    60. Harlander, R, Steinhauser, M (2003) Effects of SUSY QCD in hadronic Higgs production at next-to-next-to-leading order. Phys. Rev. D 68: pp. 111701
    61. Pak, A, Steinhauser, M, Zerf, N (2011) Towards Higgs boson production in gluon fusion to NNLO in the MSSM. Eur. Phys. J. C 71: pp. 1602
    62. Pak, A, Steinhauser, M, Zerf, N (2012) Supersymmetric next-to-next-to-leading order corrections to Higgs boson production in gluon fusion. JHEP 09: pp. 118
    63. Carena, MS, Garcia, D, Nierste, U, Wagner, CEM (2000) Effective Lagrangian for the t 炉 b H + $$ \overline{t} b{H}^{+} $$ interaction in the MSSM and charged Higgs phenomenology. Nucl. Phys. B 577: pp. 88
    64. Guasch, J, H盲fliger, P, Spira, M (2003) MSSM Higgs decays to bottom quark pairs revisited. Phys. Rev. D 68: pp. 115001
    65. Noth, D, Spira, M (2008) Higgs boson couplings to bottom quarks: two-loop supersymmetry-QCD corrections. Phys. Rev. Lett. 101: pp. 181801
    66. Noth, D, Spira, M (2011) Supersymmetric Higgs Yukawa couplings to bottom quarks at next-to-next-to-leading order. JHEP 06: pp. 084
    67. Mihaila, L, Reisser, C (2010) O 伪 s 2 $$ O\left({\alpha}_s^2\right) $$ corrections to fermionic Higgs decays in the MSSM. JHEP 08: pp. 021
    68. Dittmaier, S, Kr盲mer, M, Spira, M (2004) Higgs radiation off bottom quarks at the Tevatron and the CERN LHC. Phys. Rev. D 70: pp. 074010
    69. Dawson, S, Jackson, CB, Reina, L, Wackeroth, D (2004) Exclusive Higgs boson production with bottom quarks at hadron colliders. Phys. Rev. D 69: pp. 074027
    70. Dicus, D, Stelzer, T, Sullivan, Z, Willenbrock, S (1999) Higgs boson production in association with bottom quarks at next-to-leading order. Phys. Rev. D 59: pp. 094016
    71. Maltoni, F, Sullivan, Z, Willenbrock, S (2003) Higgs-boson production via bottom-quark fusion. Phys. Rev. D 67: pp. 093005
    72. Harlander, RV, Kilgore, WB (2003) Higgs boson production in bottom quark fusion at next-to-next-to leading order. Phys. Rev. D 68: pp. 013001
    73. Dittmaier, S, Kr盲mer, M, M眉ck, A, Schl眉ter, T (2007) MSSM Higgs-boson production in bottom-quark fusion: electroweak radiative corrections. JHEP 03: pp. 114
    74. Dawson, S, Jackson, CB, Jaiswal, P (2011) SUSY QCD corrections to Higgs-b production: is the 螖b approximation accurate?. Phys. Rev. D 83: pp. 115007
    75. M. Spira, / HIGLU: a program for the calculation of the total Higgs production cross-section at hadron colliders via gluon fusion including QCD corrections, 7" class="a-plus-plus">hep-ph/9510347 [7" class="a-plus-plus">INSPIRE].
    76. R. Harlander, http://www.robert-harlander.de/software/ggh@nnlo.
    77. Catani, S, Grazzini, M (2007) An NNLO subtraction formalism in hadron collisions and its application to Higgs boson production at the LHC. Phys. Rev. Lett. 98: pp. 222002
    78. Grazzini, M (2008) NNLO predictions for the Higgs boson signal in the H 鈫?WW 鈫?l谓l谓 and H 鈫?ZZ 鈫?4l decay channels. JHEP 02: pp. 043
    79. Grazzini, M, Sargsyan, H (2013) Heavy-quark mass effects in Higgs boson production at the LHC. JHEP 09: pp. 129
    80. Anastasiou, C, Buehler, S, Herzog, F, Lazopoulos, A (2011) Total cross-section for Higgs boson hadroproduction with anomalous standard model interactions. JHEP 12: pp. 058
    81. R. Harlander, http://www.robert-harlander.de/software/bbh@nnlo.
    82. Bagnaschi, E, Degrassi, G, Slavich, P, Vicini, A (2012) Higgs production via gluon fusion in the POWHEG approach in the SM and in the MSSM. JHEP 02: pp. 088
    83. Frixione, S, Nason, P, Oleari, C (2007) Matching NLO QCD computations with parton shower simulations: the POWHEG method. JHEP 11: pp. 070
    84. Alioli, S, Nason, P, Oleari, C, Re, E (2010) A general framework for implementing NLO calculations in shower Monte Carlo programs: the POWHEG BOX. JHEP 06: pp. 043
    85. Harlander, RV, Liebler, S, Mantler, H (2013) SusHi: a program for the calculation of Higgs production in gluon fusion and bottom-quark annihilation in the standard model and the MSSM. Comput. Phys. Commun. 184: pp. 1605
    86. Heinemeyer, S, Stal, O, Weiglein, G (2012) Interpreting the LHC Higgs search results in the MSSM. Phys. Lett. B 710: pp. 201
    87. Arbey, A, Battaglia, M, Djouadi, A, Mahmoudi, F, Quevillon, J (2012) Implications of a 125 GeV Higgs for supersymmetric models. Phys. Lett. B 708: pp. 162
    88. Carena, M, Heinemeyer, S, St氓l, O, Wagner, CEM, Weiglein, G (2013) MSSM Higgs boson searches at the LHC: benchmark scenarios after the discovery of a Higgs-like particle. Eur. Phys. J. C 73: pp. 2552
    89. LHC Higgs Cross Section Working Group , https://twiki.cern.ch/twiki/bin/view/LHCPhysics/SMInputParameter.
    90. Tevatron Electroweak Working Group , CDF and D0 collaborations, / Combination of CDF and D0 results on the mass of the top quark using up to 8.7 fb 鈭? / at the Tevatron, arXiv:1305.3929 [INSPIRE].
    91. K眉hn, JH, Steinhauser, M, Sturm, C (2007) Heavy quark masses from sum rules in four-loop approximation. Nucl. Phys. B 778: pp. 192
    92. Chetyrkin, KG (2009) Charm and bottom quark masses: an update. Phys. Rev. D 80: pp. 074010
    93. Heinemeyer, S, Hollik, W, Weiglein, G (2000) FeynHiggs: a program for the calculation of the masses of the neutral CP even Higgs bosons in the MSSM. Comput. Phys. Commun. 124: pp. 76
    94. Frank, M (2007) The Higgs boson masses and mixings of the complex MSSM in the Feynman-diagrammatic approach. JHEP 02: pp. 047
    95. Heinemeyer, S, Hollik, W, Weiglein, G (1999) The masses of the neutral CP-even Higgs bosons in the MSSM: accurate analysis at the two loop level. Eur. Phys. J. C 9: pp. 343
    96. Degrassi, G, Slavich, P, Zwirner, F (2001) On the neutral Higgs boson masses in the MSSM for arbitrary stop mixing. Nucl. Phys. B 611: pp. 403
    97. Brignole, A, Degrassi, G, Slavich, P, Zwirner, F (2002) On the O 伪 t 2 $$ O\left({\alpha}_t^2\right) $$ two loop corrections to the neutral Higgs boson masses in the MSSM. Nucl. Phys. B 631: pp. 195
    98. Brignole, A, Degrassi, G, Slavich, P, Zwirner, F (2002) On the two loop sbottom corrections to the neutral Higgs boson masses in the MSSM. Nucl. Phys. B 643: pp. 79
    99. Dedes, A, Degrassi, G, Slavich, P (2003) On the two-loop Yukawa corrections to the MSSM Higgs boson masses at large tan 尾. Nucl. Phys. B 672: pp. 144
    100. Heinemeyer, S, Hollik, W, Rzehak, H, Weiglein, G (2005) High-precision predictions for the MSSM Higgs sector at O(伪b伪s). Eur. Phys. J. C 39: pp. 465
    101. Heinemeyer, S, Hollik, W, Rzehak, H, Weiglein, G (2007) The Higgs sector of the complex MSSM at two-loop order: QCD contributions. Phys. Lett. B 652: pp. 300
    102. Degrassi, G, Heinemeyer, S, Hollik, W, Slavich, P, Weiglein, G (2003) Towards high precision predictions for the MSSM Higgs sector. Eur. Phys. J. C 28: pp. 133
    103. Allanach, BC, Djouadi, A, Kneur, JL, Porod, W, Slavich, P (2004) Precise determination of the neutral Higgs boson masses in the MSSM. JHEP 09: pp. 044
    104. Martin, SP (2002) Two loop effective potential for the minimal supersymmetric standard model. Phys. Rev. D 66: pp. 096001
    105. Martin, SP (2003) Complete two loop effective potential approximation to the lightest Higgs scalar boson mass in supersymmetry. Phys. Rev. D 67: pp. 095012
    106. Martin, SP (2005) Strong and Yukawa two-loop contributions to Higgs scalar boson self-energies and pole masses in supersymmetry. Phys. Rev. D 71: pp. 016012
    107. Martin, SP (2007) Three-loop corrections to the lightest Higgs scalar boson mass in supersymmetry. Phys. Rev. D 75: pp. 055005
    108. Harlander, RV, Kant, P, Mihaila, L, Steinhauser, M (2008) Higgs boson mass in supersymmetry to three loops. Phys. Rev. Lett. 100: pp. 191602
    109. Kant, P, Harlander, RV, Mihaila, L, Steinhauser, M (2010) Light MSSM Higgs boson mass to three-loop accuracy. JHEP 08: pp. 104
    110. ATLAS collaboration, / Search for strongly produced superpartners in final states with two same sign leptons with the ATLAS detector using 21 fb 鈭?1 / of proton-proton collisions at 7"> \( \sqrt{s} \) = 8 / TeV, ATLAS-CONF-2013-007 (2013) [7" class="a-plus-plus">INSPIRE].
    Search for new phenomena in final states with large jet multiplicities and missing transverse momentum at s $$ \sqrt{s} $$ = 8 TeV proton-proton collisions using the ATLAS experiment. JHEP 10: pp. 130
    111. ATLAS collaboration, / Search for squarks and gluinos with the ATLAS detector in final states with jets and missing transverse momentum and 20.3 fb 鈭? / of \( \sqrt{s} \) = 8 / TeV proton-proton collision data, 7563" class="a-plus-plus">ATLAS-CONF-2013-047 (2013) [7" class="a-plus-plus">INSPIRE].
    112. ATLAS collaboration, / Search for strong production of supersymmetric particles in final states with missing transverse momentum and at least three b-jets using 20.1 fb 鈭? / of pp collisions at \( \sqrt{s} \) = 8 / TeV with the ATLAS detector, 7778" class="a-plus-plus">ATLAS-CONF-2013-061 (2013) [INSPIRE].
    113. ATLAS collaboration, / Search for squarks and gluinos in events with isolated leptons, jets and missing transverse momentum at \( \sqrt{s} \) = 8 / TeV with the ATLAS detector, 7779" class="a-plus-plus">ATLAS-CONF-2013-062 (2013) [INSPIRE].
    114. ATLAS collaboration, / Search for strongly produced supersymmetric particles in decays with two leptons at \( \sqrt{s} \) = 8 / TeV, 72" class="a-plus-plus">ATLAS-CONF-2013-089 (2013) [INSPIRE].
    Search for supersymmetry in hadronic final states with missing transverse energy using the variables 伪T and b-quark multiplicity in pp collisions at s $$ \sqrt{s} $$ = 8 TeV. Eur. Phys. J. C 73: pp. 2568
    Search for new physics in events with same-sign dileptons and jets in pp collisions at s $$ \sqrt{s} $$ = 8 TeV. JHEP 01: pp. 163
    115. CMS collaboration, / A search for anomalous production of events with three or more leptons using 19.5/fb of \( \sqrt{s} \) = 8 / TeV LHC data, 719" class="a-plus-plus">CMS-PAS-SUS-13-002 (2013).
    116. CMS collaboration, / Search for supersymmetry in pp collisions at \( \sqrt{s} \) = 8 / TeV in events with three leptons and at least one b-tagged jet, 7560" class="a-plus-plus">CMS-PAS-SUS-13-008 (2013).
    117. CMS collaboration, / Search for supersymmetry in pp collisions at \( \sqrt{s} \) = 8 / TeV in events with a single lepton, large jet multiplicity and multiple b jets, 7" class="a-plus-plus">arXiv:1311.4937 [7" class="a-plus-plus">INSPIRE].
    118. CMS collaboration, / Search for new physics in the multijet and missing transverse momentum final state in proton-proton collisions at \( \sqrt{s} \) = 8 / TeV, 770" class="a-plus-plus">arXiv:1402.4770 [770" class="a-plus-plus">INSPIRE].
    119. CMS collaboration, / Search for supersymmetry using razor variables in events with b-jets in pp collisions at 8 TeV, CMS-PAS-SUS-13-004 (2013).
    120. ATLAS collaboration, / Search for direct top-squark pair production in final states with two leptons in pp collisions at \( \sqrt{s} \) = 8 / TeV with the ATLAS detector, arXiv:1403.4853 [INSPIRE].
    Search for top-squark pair production in the single-lepton final state in pp collisions at s $$ \sqrt{s} $$ = 8 TeV. Eur. Phys. J. C 73: pp. 2677
    121. CMS collaboration, / Search for top squarks in multijet events with large missing momentum in proton-proton collisions at 8 TeV, CMS-PAS-SUS-13-015 (2013).
    122. ATLAS collaboration, / Search for pair-produced top squarks decaying into a charm quark and the lightest neutralinos with 20.3 fb 鈭? / of pp collisions at \( \sqrt{s} \) = 8 / TeV with the ATLAS detector at the LHC, ATLAS-CONF-2013-068 (2013).
    123. CMS collaboration, / Search for top squarks decaying to a charm quark and a neutralino in events with a jet and missing transverse momentum, CMS-PAS-SUS-13-009 (2014).
    Search for direct third-generation squark pair production in final states with missing transverse momentum and two b-jets in s $$ \sqrt{s} $$ = 8 TeV pp collisions with the ATLAS detector. JHEP 10: pp. 189
    124. Spira, M (1998) QCD effects in Higgs physics. Fortschr. Phys. 46: pp. 203
    125. Harlander, R (2004) Supersymmetric Higgs production at the Large Hadron Collider. Eur. Phys. J. C 33: pp. S454
    126. Martin, AD, Stirling, WJ, Thorne, RS, Watt, G (2009) Parton distributions for the LHC. Eur. Phys. J. C 63: pp. 189
    127. Anastasiou, C, Melnikov, K, Petriello, F (2005) Fully differential Higgs boson production and the di-photon signal through next-to-next-to-leading order. Nucl. Phys. B 724: pp. 197
    128. Boos, E, Plehn, T (2004) Higgs boson production induced by bottom quarks. Phys. Rev. D 69: pp. 094005
    129. Chetyrkin, KG, Steinhauser, M (2000) The relation between the MS-bar and the on-shell quark mass at order 伪 s 3 $$ {\alpha}_s^3 $$. Nucl. Phys. B 573: pp. 617
    130. Melnikov, K, Ritbergen, T (2000) The three-loop relation between the MS 炉 $$ \overline{\mathrm{MS}} $$ and the pole quark masses. Phys. Lett. B 482: pp. 99
    131. Chetyrkin, KG (1997) Quark mass anomalous dimension to O 伪 S 4 $$ O\left({\alpha}_S^4\right) $$. Phys. Lett. B 404: pp. 161
    132. Vermaseren, JAM, Larin, SA, Ritbergen, T (1997) The four loop quark mass anomalous dimension and the invariant quark mass. Phys. Lett. B 405: pp. 327
    133. Baglio, J, Djouadi, A (2011) Higgs production at the LHC. JHEP 03: pp. 055
    134. Kotsky, MI, Yakovlev, OI (1998) Resummation of double logarithms in the process H 鈫?纬纬. Phys. Lett. B 418: pp. 335
    135. Akhoury, R, Wang, H, Yakovlev, OI (2001) Resummation of large QCD logarithms in H 鈫捨澄? Phys. Rev. D 64: pp. 113008
    136. Hall, LJ, Rattazzi, R, Sarid, U (1994) The top quark mass in supersymmetric SO(10) unification. Phys. Rev. D 50: pp. 7048
    137. Hempfling, R (1994) Yukawa coupling unification with supersymmetric threshold corrections. Phys. Rev. D 49: pp. 6168
    138. Lai, H-L (2010) New parton distributions for collider physics. Phys. Rev. D 82: pp. 074024
    139. Ball, RD (2013) Parton distributions with LHC data. Nucl. Phys. B 867: pp. 244
    140. Demartin, F, Forte, S, Mariani, E, Rojo, J, Vicini, A (2010) Impact of parton distribution function and 伪s uncertainties on Higgs boson production in gluon fusion at hadron colliders. Phys. Rev. D 82: pp. 014002
    141. S. Alekhin et al., / The PDF4LHC Working Group interim report, arXiv:1101.0536 [INSPIRE].
    142. M. Botje et al., / The PDF4LHC Working Group interim recommendations, arXiv:1101.0538 [INSPIRE].
    143. Beringer, J (2012) Review of particle physics. Phys. Rev. D 86: pp. 010001
    144. Martin, AD, Stirling, WJ, Thorne, RS, Watt, G (2010) Heavy-quark mass dependence in global PDF analyses and 3- and 4-flavour parton distributions. Eur. Phys. J. C 70: pp. 51
    145. Ball, RD (2011) Impact of heavy quark masses on parton distributions and LHC phenomenology. Nucl. Phys. B 849: pp. 296
  • 刊物类别:Physics and Astronomy
  • 刊物主题:Physics
    Elementary Particles and Quantum Field Theory
    Quantum Field Theories, String Theory
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1029-8479
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