A RetroSearch Logo

Home - News ( United States | United Kingdom | Italy | Germany ) - Football scores

Search Query:

Showing content from https://link.springer.com/doi/10.1007/JHEP07(2012)092 below:

NLO Higgs boson production plus one and two jets using the POWHEG BOX, MadGraph4 and MCFM

  • ATLAS collaboration, G. Aad et al., Combined search for the standard model Higgs boson using up to 4.9 fb −1 of pp collision data at \( \sqrt {s} = 7 \) TeV with the ATLAS detector at the LHC, Phys. Lett. B 710 (2012) 49 [arXiv:1202.1408] [INSPIRE].

    ADS  Google Scholar 

  • CMS collaboration, S. Chatrchyan et al., Combined results of searches for the standard model Higgs boson in pp collisions at \( \sqrt {s} = 7 \) TeV, Phys. Lett. B 710 (2012) 26 [arXiv:1202.1488] [INSPIRE].

    ADS  Google Scholar 

  • D. Zeppenfeld, R. Kinnunen, A. Nikitenko and E. Richter-Was, Measuring Higgs boson couplings at the CERN LHC, Phys. Rev. D 62 (2000) 013009 [hep-ph/0002036] [INSPIRE].

    ADS  Google Scholar 

  • T. Plehn, D.L. Rainwater and D. Zeppenfeld, Determining the structure of Higgs couplings at the LHC, Phys. Rev. Lett. 88 (2002) 051801 [hep-ph/0105325] [INSPIRE].

    Article  ADS  Google Scholar 

  • M. Dührssen et al., Extracting Higgs boson couplings from CERN LHC data, Phys. Rev. D 70 (2004) 113009 [hep-ph/0406323] [INSPIRE].

    ADS  Google Scholar 

  • T. Figy, C. Oleari and D. Zeppenfeld, Next-to-leading order jet distributions for Higgs boson production via weak boson fusion, Phys. Rev. D 68 (2003) 073005 [hep-ph/0306109] [INSPIRE].

    ADS  Google Scholar 

  • V. Ravindran, J. Smith and W. Van Neerven, Next-to-leading order QCD corrections to differential distributions of Higgs boson production in hadron hadron collisions, Nucl. Phys. B 634 (2002) 247 [hep-ph/0201114] [INSPIRE].

    Article  ADS  Google Scholar 

  • E.L. Berger and J.M. Campbell, Higgs boson production in weak boson fusion at next-to-leading order, Phys. Rev. D 70 (2004) 073011 [hep-ph/0403194] [INSPIRE].

    ADS  Google Scholar 

  • G. Klamke and D. Zeppenfeld, Higgs plus two jet production via gluon fusion as a signal at the CERN LHC, JHEP 04 (2007) 052 [hep-ph/0703202] [INSPIRE].

    Article  ADS  Google Scholar 

  • V. Del Duca, A. Frizzo and F. Maltoni, Higgs boson production in association with three jets, JHEP 05 (2004) 064 [hep-ph/0404013] [INSPIRE].

    Article  ADS  Google Scholar 

  • V. Del Duca, G. Klamke, D. Zeppenfeld, M.L. Mangano, M. Moretti, et al., Monte Carlo studies of the jet activity in Higgs + 2 jet events, JHEP 10 (2006) 016 [hep-ph/0608158] [INSPIRE].

    Article  ADS  Google Scholar 

  • J.M. Campbell, R.K. Ellis and G. Zanderighi, Next-to-Leading order Higgs + 2 jet production via gluon fusion, JHEP 10 (2006) 028 [hep-ph/0608194] [INSPIRE].

    Article  ADS  Google Scholar 

  • J.M. Campbell, R.K. Ellis and C. Williams, Hadronic production of a Higgs boson and two jets at next-to-leading order, Phys. Rev. D 81 (2010) 074023 [arXiv:1001.4495] [INSPIRE].

    ADS  Google Scholar 

  • V. Del Duca, W. Kilgore, C. Oleari, C. Schmidt and D. Zeppenfeld, Higgs + 2 jets via gluon fusion, Phys. Rev. Lett. 87 (2001) 122001 [hep-ph/0105129] [INSPIRE].

    Article  ADS  Google Scholar 

  • V. Del Duca, W. Kilgore, C. Oleari, C. Schmidt and D. Zeppenfeld, Gluon fusion contributions to H + 2 jet production, Nucl. Phys. B 616 (2001) 367 [hep-ph/0108030] [INSPIRE].

    Article  ADS  Google Scholar 

  • S. Hoeche, F. Krauss, M. Schonherr and F. Siegert, A critical appraisal of NLO + PS matching methods, arXiv:1111.1220 [INSPIRE].

  • S. Alioli, P. Nason, C. Oleari and E. Re, A general framework for implementing NLO calculations in shower Monte Carlo programs: the POWHEG BOX, JHEP 06 (2010) 043 [arXiv:1002.2581] [INSPIRE].

    Article  ADS  Google Scholar 

  • J. Campbell, K. Ellis and C. Williams, MCFMMonte Carlo for FeMtobarn processes, http://mcfm.fnal.gov.

  • T. Stelzer and W. Long, Automatic generation of tree level helicity amplitudes, Comput. Phys. Commun. 81 (1994) 357 [hep-ph/9401258] [INSPIRE].

    Article  ADS  Google Scholar 

  • J. Alwall et al., MadGraph/MadEvent v4: the new web generation, JHEP 09 (2007) 028 [arXiv:0706.2334] [INSPIRE].

    Article  ADS  Google Scholar 

  • H. Murayama, I. Watanabe and K. Hagiwara, Helas: HELicity Amplitude Subroutines for Feynman diagram evaluations, KEK-91-11 (1992).

  • R. Frederix, T. Gehrmann and N. Greiner, Automation of the Dipole subtraction method in MadGraph/MadEvent, JHEP 09 (2008) 122 [arXiv:0808.2128] [INSPIRE].

    Article  ADS  Google Scholar 

  • R. Frederix, T. Gehrmann and N. Greiner, Integrated dipoles with MadDipole in the MadGraph framework, JHEP 06 (2010) 086 [arXiv:1004.2905] [INSPIRE].

    Article  ADS  Google Scholar 

  • T. Gehrmann and N. Greiner, Photon radiation with MadDipole, JHEP 12 (2010) 050 [arXiv:1011.0321] [INSPIRE].

    Article  ADS  Google Scholar 

  • R. Frederix, S. Frixione, F. Maltoni and T. Stelzer, Automation of next-to-leading order computations in QCD: The FKS subtraction, JHEP 10 (2009) 003 [arXiv:0908.4272] [INSPIRE].

    Article  ADS  Google Scholar 

  • F. Wilczek, Decays of heavy vector mesons into Higgs particles, Phys. Rev. Lett. 39 (1977) 1304 [INSPIRE].

    Article  ADS  Google Scholar 

  • A. Djouadi, M. Spira and P. Zerwas, Production of Higgs bosons in proton colliders: QCD corrections, Phys. Lett. B 264 (1991) 440 [INSPIRE].

    ADS  Google Scholar 

  • S. Dawson, Radiative corrections to Higgs boson production, Nucl. Phys. B 359 (1991) 283 [INSPIRE].

    Article  ADS  Google Scholar 

  • C.F. Berger, V. Del Duca and L.J. Dixon, Recursive Construction of Higgs-plus-multiparton loop amplitudes: the last of the Φ-nite loop amplitudes, Phys. Rev. D 74 (2006) 094021 [Erratum ibid. D 76 (2007) 099901] [hep-ph/0608180] [INSPIRE].

    ADS  Google Scholar 

  • S. Badger and E.N. Glover, One-loop helicity amplitudes for H → gluons: the all-minus configuration, Nucl. Phys. Proc. Suppl. 160 (2006) 71 [hep-ph/0607139] [INSPIRE].

    Article  ADS  Google Scholar 

  • S. Badger, E.N. Glover and K. Risager, One-loop ϕ-MHV amplitudes using the unitarity bootstrap, JHEP 07 (2007) 066 [arXiv:0704.3914] [INSPIRE].

    Article  MathSciNet  ADS  Google Scholar 

  • E.N. Glover, P. Mastrolia and C. Williams, One-loop ϕ-MHV amplitudes using the unitarity bootstrap: the general helicity case, JHEP 08 (2008) 017 [arXiv:0804.4149] [INSPIRE].

    Article  MathSciNet  ADS  Google Scholar 

  • S. Badger, E. Nigel Glover, P. Mastrolia and C. Williams, One-loop Higgs plus four gluon amplitudes: full analytic results, JHEP 01 (2010) 036 [arXiv:0909.4475] [INSPIRE].

    Article  ADS  Google Scholar 

  • L.J. Dixon and Y. Sofianatos, Analytic one-loop amplitudes for a Higgs boson plus four partons, JHEP 08 (2009) 058 [arXiv:0906.0008] [INSPIRE].

    Article  MathSciNet  ADS  Google Scholar 

  • S. Badger, J.M. Campbell, R.K. Ellis and C. Williams, Analytic results for the one-loop NMHV Hbar qqgg amplitude, JHEP 12 (2009) 035 [arXiv:0910.4481] [INSPIRE].

    Article  ADS  Google Scholar 

  • S. Frixione, P. Nason and C. Oleari, Matching NLO QCD computations with parton shower simulations: the POWHEG method, JHEP 11 (2007) 070 [arXiv:0709.2092] [INSPIRE].

    Article  ADS  Google Scholar 

  • P. Nason, MINT: a computer program for adaptive Monte Carlo integration and generation of unweighted distributions, arXiv:0709.2085 [INSPIRE].

  • P. Nason and B. Webber, Next-to-leading-order event generators, arXiv:1202.1251 [INSPIRE].

  • S. Alioli, K. Hamilton, P. Nason, C. Oleari and E. Re, Jet pair production in POWHEG, JHEP 04 (2011) 081 [arXiv:1012.3380] [INSPIRE].

    Article  ADS  Google Scholar 

  • J. Pumplin et al., New generation of parton distributions with uncertainties from global QCD analysis, JHEP 07 (2002) 012 [hep-ph/0201195] [INSPIRE].

    Article  ADS  Google Scholar 

  • A.D. Martin, W.J. Stirling, R.S. Thorne and G. Watt, Parton distributions for the LHC, Eur. Phys. J. C 63 (2009) 189 [arXiv:0901.0002] [INSPIRE].

    Article  ADS  Google Scholar 

  • NNPDF collaboration, R.D. Ball et al., A Determination of parton distributions with faithful uncertainty estimation, Nucl. Phys. B 809 (2009) 1 [Erratum ibid. B 816 (2009) 293] [arXiv:0808.1231] [INSPIRE].

    Article  ADS  Google Scholar 

  • M. Cacciari, G.P. Salam and G. Soyez, The \( {\overline k_t} \) jet clustering algorithm, JHEP 04 (2008) 063 [arXiv:0802.1189] [INSPIRE].

    Article  ADS  Google Scholar 

  • S. Alioli, P. Nason, C. Oleari and E. Re, NLO Higgs boson production via gluon fusion matched with shower in POWHEG, JHEP 04 (2009) 002 [arXiv:0812.0578] [INSPIRE.

    Article  ADS  Google Scholar 

  • P. Nason, Recent developments in POWHEG, Pos(RADCOR2009)018 [arXiv:1001.2747] [INSPIRE].

  • S. Dittmaier et al., Handbook of LHC Higgs cross sections: 2. Differential distributions, arXiv:1201.3084 [INSPIRE].

  • M. Grazzini, Higgs production at hadron colliders: tools, http://theory.fi.infn.it/grazzini/codes.html.

  • G. Bozzi, S. Catani, D. de Florian and M. Grazzini, The q(T) spectrum of the Higgs boson at the LHC in QCD perturbation theory, Phys. Lett. B 564 (2003) 65 [hep-ph/0302104] [INSPIRE].

    ADS  Google Scholar 

  • G. Bozzi, S. Catani, D. de Florian and M. Grazzini, Transverse-momentum resummation and the spectrum of the Higgs boson at the LHC, Nucl. Phys. B 737 (2006) 73 [hep-ph/0508068] [INSPIRE].

    Article  ADS  Google Scholar 

  • D. de Florian, G. Ferrera, M. Grazzini and D. Tommasini, Transverse-momentum resummation: Higgs boson production at the Tevatron and the LHC, JHEP 11 (2011) 064 [arXiv:1109.2109] [INSPIRE].

    Article  Google Scholar 


  • RetroSearch is an open source project built by @garambo | Open a GitHub Issue

    Search and Browse the WWW like it's 1997 | Search results from DuckDuckGo

    HTML: 3.2 | Encoding: UTF-8 | Version: 0.7.4