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/JHEP12(2012)118 below:

The social Higgs | Journal of High Energy Physics

  • CMS collaboration, J. Incandela, Latest update in the search for the Higgs boson, talk given at the Latest update in the search for the Higgs boson CERN Seminar, Geneva Switzerland, 4 Jul 2012.

  • ATLAS collaboration, F. Gianotti, Latest update in the search for the Higgs boson, talk given at the Latest update in the search for the Higgs boson CERN Seminar, Geneva Switzerland, 4 Jul 2012.

  • 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].

    ADS  Google Scholar 

  • 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].

    ADS  Google Scholar 

  • V. Silveira and A. Zee, Scalar phantoms, Phys. Lett. B 161 (1985) 136 [INSPIRE].

    MathSciNet  ADS  Google Scholar 

  • J. McDonald, Gauge singlet scalars as cold dark matter, Phys. Rev. D 50 (1994) 3637 [hep-ph/0702143] [INSPIRE].

    ADS  Google Scholar 

  • C. Burgess, M. Pospelov and T. ter Veldhuis, The minimal model of nonbaryonic dark matter: a singlet scalar, Nucl. Phys. B 619 (2001) 709 [hep-ph/0011335] [INSPIRE].

    Article  ADS  Google Scholar 

  • H. Davoudiasl, R. Kitano, T. Li and H. Murayama, The new minimal standard model, Phys. Lett. B 609 (2005) 117 [hep-ph/0405097] [INSPIRE].

    ADS  Google Scholar 

  • B. Patt and F. Wilczek, Higgs-field portal into hidden sectors, hep-ph/0605188 [INSPIRE].

  • J. March-Russell, S.M. West, D. Cumberbatch and D. Hooper, Heavy dark matter through the Higgs portal, JHEP 07 (2008) 058 [arXiv:0801.3440] [INSPIRE].

    Article  ADS  Google Scholar 

  • S. Andreas, C. Arina, T. Hambye, F.-S. Ling and M.H. Tytgat, A light scalar WIMP through the Higgs portal and CoGeNT, Phys. Rev. D 82 (2010) 043522 [arXiv:1003.2595] [INSPIRE].

    ADS  Google Scholar 

  • M. Raidal and A. Strumia, Hints for a non-standard Higgs boson from the LHC, Phys. Rev. D 84 (2011) 077701 [arXiv:1108.4903] [INSPIRE].

    ADS  Google Scholar 

  • X.-G. He and J. Tandean, Hidden Higgs boson at the LHC and light dark matter searches, Phys. Rev. D 84 (2011) 075018 [arXiv:1109.1277] [INSPIRE].

    ADS  Google Scholar 

  • Y. Mambrini, Higgs searches and singlet scalar dark matter: combined constraints from XENON 100 and the LHC, Phys. Rev. D 84 (2011) 115017 [arXiv:1108.0671] [INSPIRE].

    ADS  Google Scholar 

  • C. Englert, T. Plehn, D. Zerwas and P.M. Zerwas, Exploring the Higgs portal, Phys. Lett. B 703 (2011) 298 [arXiv:1106.3097] [INSPIRE].

    ADS  Google Scholar 

  • B. Batell, S. Gori and L.-T. Wang, Exploring the Higgs portal with 10/fb at the LHC, JHEP 06 (2012) 172 [arXiv:1112.5180] [INSPIRE].

    Article  ADS  Google Scholar 

  • A. Djouadi, A. Falkowski, Y. Mambrini and J. Quevillon, Direct detection of Higgs-portal dark matter at the LHC, arXiv:1205.3169 [INSPIRE].

  • Y. Mambrini, Invisible Higgs and scalar dark matter, J. Phys. Conf. Ser. 375 (2012) 012045 [arXiv:1112.0011] [INSPIRE].

    Article  ADS  Google Scholar 

  • J. Hubisz, J. Lykken, M. Pierini and M. Spiropulu, Missing energy look-alikes with 100 pb −1 at the LHC, Phys. Rev. D 78 (2008) 075008 [arXiv:0805.2398] [INSPIRE].

    ADS  Google Scholar 

  • A. De Rujula, J. Lykken, M. Pierini, C. Rogan and M. Spiropulu, Higgs look-alikes at the LHC, Phys. Rev. D 82 (2010) 013003 [arXiv:1001.5300] [INSPIRE].

    ADS  Google Scholar 

  • A. De Rujula, To be or not to be: Higgs impostors at the LHC, Nuovo Cim. C 033N5 (2010) 293 [arXiv:1005.2939] [INSPIRE].

    Google Scholar 

  • P.J. Fox, D. Tucker-Smith and N. Weiner, Higgs friends and counterfeits at hadron colliders, JHEP 06 (2011) 127 [arXiv:1104.5450] [INSPIRE].

    Article  ADS  Google Scholar 

  • R.S. Gupta and J.D. Wells, Higgs boson search significance deformations due to mixed-in scalars, Phys. Lett. B 710 (2012) 154 [arXiv:1110.0824] [INSPIRE].

    ADS  Google Scholar 

  • R.K. Ellis, I. Hinchliffe, M. Soldate and J. van der Bij, Higgs decay to τ + τ : a possible signature of intermediate mass Higgs bosons at the SSC, Nucl. Phys. B 297 (1988) 221 [INSPIRE].

  • 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 

  • S. Dawson and R. Kauffman, Higgs boson plus multi-jet rates at the SSC, Phys. Rev. Lett. 68 (1992) 2273 [INSPIRE].

    Article  ADS  Google Scholar 

  • M. Spira, A. Djouadi, D. Graudenz and P. Zerwas, Higgs boson production at the LHC, Nucl. Phys. B 453 (1995) 17 [hep-ph/9504378] [INSPIRE].

    Article  ADS  Google Scholar 

  • A. Azatov, R. Contino and J. Galloway, Model-independent bounds on a light Higgs, JHEP 04 (2012) 127 [arXiv:1202.3415] [INSPIRE].

    Article  ADS  Google Scholar 

  • D. Carmi, A. Falkowski, E. Kuflik and T. Volansky, Interpreting LHC Higgs results from natural new physics perspective, JHEP 07 (2012) 136 [arXiv:1202.3144] [INSPIRE].

    Article  ADS  Google Scholar 

  • J. Espinosa, C. Grojean, M. Muhlleitner and M. Trott, Fingerprinting Higgs suspects at the LHC, JHEP 05 (2012) 097 [arXiv:1202.3697] [INSPIRE].

    Article  ADS  Google Scholar 

  • P.P. Giardino, K. Kannike, M. Raidal and A. Strumia, Reconstructing Higgs boson properties from the LHC and Tevatron data, JHEP 06 (2012) 117 [arXiv:1203.4254] [INSPIRE].

    Article  ADS  Google Scholar 

  • A. Azatov et al., Determining Higgs couplings with a model-independent analysis of hγγ, JHEP 06 (2012) 134 [arXiv:1204.4817] [INSPIRE].

    Article  ADS  Google Scholar 

  • I. Low, J. Lykken and G. Shaughnessy, Have we observed the Higgs (imposter)?, Phys. Rev. D 86 (2012) 093012 [arXiv:1207.1093] [INSPIRE].

    ADS  Google Scholar 

  • T. Corbett, O. Eboli, J. Gonzalez-Fraile and M. Gonzalez-Garcia, Constraining anomalous Higgs interactions, Phys. Rev. D 86 (2012) 075013 [arXiv:1207.1344] [INSPIRE].

    ADS  Google Scholar 

  • P.P. Giardino, K. Kannike, M. Raidal and A. Strumia, Is the resonance at 125 GeV the Higgs boson?, Phys. Lett. B 718 (2012) 469 [arXiv:1207.1347] [INSPIRE].

    ADS  Google Scholar 

  • M.R. Buckley and D. Hooper, Are there hints of light stops in recent Higgs search results?, Phys. Rev. D 86 (2012) 075008 [arXiv:1207.1445] [INSPIRE].

    ADS  Google Scholar 

  • J. Ellis and T. You, Global analysis of the Higgs candidate with mass125 GeV, JHEP 09 (2012) 123 [arXiv:1207.1693] [INSPIRE].

    Article  ADS  Google Scholar 

  • M. Montull and F. Riva, Higgs discovery: the beginning or the end of natural EWSB?, JHEP 11 (2012) 018 [arXiv:1207.1716] [INSPIRE].

    Article  ADS  Google Scholar 

  • J. Espinosa, C. Grojean, M. Muhlleitner and M. Trott, First glimpses at Higgsface, arXiv:1207.1717 [INSPIRE].

  • D. Carmi, A. Falkowski, E. Kuflik, T. Volansky and J. Zupan, Higgs after the discovery: a status report, JHEP 10 (2012) 196 [arXiv:1207.1718] [INSPIRE].

    Article  ADS  Google Scholar 

  • G. Cowan, Statistical data analysis, Clarendon, Oxford U.K. (1998) [INSPIRE].

    Google Scholar 

  • G. Cowan, K. Cranmer, E. Gross and O. Vitells, Asymptotic formulae for likelihood-based tests of new physics, Eur. Phys. J. C 71 (2011) 1554 [arXiv:1007.1727] [INSPIRE].

    ADS  Google Scholar 

  • A. Wald, Tests of statistical hypotheses concerning several parameters when the number of observations is large, Trans. Am. Math. Soc. 54 (1943) 426

    Article  MathSciNet  MATH  Google Scholar 

  • ATLAS collaboration, An update to the combined search for the standard model Higgs boson with the ATLAS detector at the LHC using up to 4.9 fb −1 of pp collision data at \( \sqrt{s}=7 \) TeV, Technical Report ATLAS-CONF-2012-019 (2012).

  • CMS collaboration, Combination of SM, SM4, FP Higgs boson searches, Technical Report CMS-PAS-HIG-12-008 (2012).

  • CMS collaboration, 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 

  • CMS collaboration, Observation of a new boson with a mass near 125 GeV, Technical Report CMS-PAS-HIG-12-020 (2012).

  • Tevatron New Physics Higgs Working Group, CDF and D0 collaborations, Updated combination of CDF and D0 searches for standard model Higgs boson production with up to 10.0 fb −1 of data, arXiv:1207.0449 [INSPIRE].

  • M. Bowen, Y. Cui and J.D. Wells, Narrow trans-TeV Higgs bosons and Hhh decays: two LHC search paths for a hidden sector Higgs boson, JHEP 03 (2007) 036 [hep-ph/0701035] [INSPIRE].

    Article  ADS  Google Scholar 

  • M.E. Peskin and T. Takeuchi, A new constraint on a strongly interacting Higgs sector, Phys. Rev. Lett. 65 (1990) 964 [INSPIRE].

    Article  ADS  Google Scholar 

  • M.E. Peskin and T. Takeuchi, Estimation of oblique electroweak corrections, Phys. Rev. D 46 (1992) 381 [INSPIRE].

    ADS  Google Scholar 

  • K. Hagiwara, S. Ishihara, R. Szalapski and D. Zeppenfeld, Low-energy effects of new interactions in the electroweak boson sector, Phys. Rev. D 48 (1993) 2182 [INSPIRE].

    ADS  Google Scholar 

  • K. Hagiwara, S. Matsumoto, D. Haidt and C. Kim, A novel approach to confront electroweak data and theory, Z. Phys. C 64 (1994) 559 [Erratum ibid. C 68 (1995) 352] [hep-ph/9409380] [INSPIRE].

  • Particle Data Group collaboration, J. Beringer et al., Review of particle physics, Phys. Rev. D 86 (2012) 010001 [INSPIRE].

    ADS  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