Model-independent bounds on a light Higgs (original) (raw)
References
D.B. Kaplan and H. Georgi, SU(2) × U(1) breaking by vacuum misalignment, Phys. Lett.B 136 (1984)183 [INSPIRE]. ADS Google Scholar
S. Dimopoulos and J. Preskill, Massless composites with massive constituents, Nucl. Phys.B 199 (1982)206 [INSPIRE]. ArticleADS Google Scholar
T. Banks, Constraints on SU(2) × U(1) breaking by vacuum misalignment, Nucl. Phys.B 243 (1984)125 [INSPIRE]. ADS Google Scholar
D.B. Kaplan, H. Georgi and S. Dimopoulos, Composite Higgs scalars, Phys. Lett.B 136 (1984)187 [INSPIRE]. ADS Google Scholar
H. Georgi, D.B. Kaplan and P. Galison, Calculation of the composite Higgs mass, Phys. Lett.B 143 (1984) 152 [INSPIRE]. ADS Google Scholar
H. Georgi and D.B. Kaplan, Composite Higgs and custodial SU(2), Phys. Lett. B 145 (1984) 216 [INSPIRE]. ADS Google Scholar
M.J. Dugan, H. Georgi and D.B. Kaplan, Anatomy of a composite Higgs model, Nucl. Phys.B 254 (1985) 299 [INSPIRE]. ArticleADS Google Scholar
P. Bechtle, O. Brein, S. Heinemeyer, G. Weiglein and K.E. Williams, HiggsBounds: confronting arbitrary Higgs sectors with exclusion bounds from LEP and the Tevatron, Comput. Phys. Commun. 181 (2010) 138 [arXiv:0811.4169] [INSPIRE]. ArticleADSMATH Google Scholar
P. Bechtle, O. Brein, S. Heinemeyer, G. Weiglein and K.E. Williams, HiggsBounds 2.0.0: confronting neutral and charged Higgs sector predictions with exclusion bounds from LEP and the Tevatron, Comput. Phys. Commun. 182 (2011) 2605 [arXiv:1102.1898] [INSPIRE]. ArticleADS Google Scholar
M. Duhrssen, Prospects for the measurement of Higgs boson coupling parameters in the mass range from 110-190 GeV, ATL-PHYS-2003-030 (2003).
M. Dührssen, S. Heinemeyer, H. Logan, D. Rainwater, G. Weiglein and D. Zeppenfeld, Extracting Higgs boson couplings from CERN LHC data, Phys. Rev.D 70 (2004) 113009 [hep-ph/0406323] [INSPIRE]. ADS Google Scholar
F. Bonnet, M. Gavela, T. Ota and W. Winter, Anomalous Higgs couplings at the LHC and their theoretical interpretation, Phys. Rev.D 85 (2012) 035016 [arXiv:1105.5140] [INSPIRE]. ADS Google Scholar
J. Espinosa, C. Grojean and M. Muhlleitner, Composite Higgs under LHC experimental scrutiny, arXiv:1202.1286 [INSPIRE].
S. Bock, R. Lafaye, T. Plehn, M. Rauch, D. Zerwas and P.M. Zerwas, Measuring hidden Higgs and strongly-interacting Higgs scenarios, Phys. Lett.B 694 (2010) 44 [arXiv:1007.2645] [INSPIRE]. ADS Google Scholar
R. Contino, L. Da Rold and A. Pomarol, Light custodians in natural composite Higgs models, Phys. Rev. D 75 (2007) 055014 [hep-ph/0612048] [INSPIRE]. ADS Google Scholar
J. Galloway, J.A. Evans, M.A. Luty and R.A. Tacchi, Minimal conformal technicolor and precision electroweak tests, JHEP10 (2010) 086 [arXiv:1001.1361] [INSPIRE]. Google Scholar
W.D. Goldberger, B. Grinstein and W. Skiba, Distinguishing the Higgs boson from the dilaton at the Large Hadron Collider, Phys. Rev. Lett. 100 (2008) 111802 [arXiv:0708.1463] [INSPIRE]. ArticleADS Google Scholar
B.A. Campbell, J. Ellis and K.A. Olive, Phenomenology and cosmology of an electroweak pseudo-dilaton and electroweak baryons, JHEP03 (2012) 026 [arXiv:1111.4495] [INSPIRE]. ArticleADS Google Scholar
A. Azatov and J. Galloway, Light custodians and Higgs physics in composite models, Phys. Rev. D 85 (2012) 055013 [arXiv:1110.5646] [INSPIRE]. ADS Google Scholar
M.E. Peskin and T. Takeuchi, Estimation of oblique electroweak corrections, Phys. Rev.D46 (1992)381 [INSPIRE]. ADS Google Scholar
R. Barbieri, A. Pomarol, R. Rattazzi and A. Strumia, Electroweak symmetry breaking after LEP-1 and LEP-2, Nucl. Phys. B 703 (2004) 127 [hep-ph/0405040] [INSPIRE]. ArticleADS Google Scholar
ATLAS, CMS, LHC Higgs Combination Group collaboration, Procedure for the LHC Higgs boson search combination in Summer 2011, ATL-PHYS-PUB-2011-11 (2011).
G. D’Agostini, Bayesian reasoning in data analysis: A critical introduction, World Scientific, New York U.S.A. (2003), pg. 329. BookMATH Google Scholar
CMS collaboration, S. Chatrchyan et al., Search for the standard model Higgs boson decaying into two photons in pp collisions at \(\sqrt {s} = {7}\;TeV\), arXiv:1202.1487 [INSPIRE].
G. Cowan, Statistical data analysis, Clarendon, Oxford U.K. (1998), pg. 197. Google Scholar
CMS collaboration, S. Chatrchyan et al., Combined results of searches for the standard model Higgs boson in pp collisions at \(\sqrt {s} = {7}\;TeV\), arXiv:1202.1488 [INSPIRE].
CMS, collaboration, Combination of CMS searches for a Standard Model Higgs boson, CMS Note CMS-PAS HIG-11-032 (2011).
CMS collaboration, S. Chatrchyan et al., Search for the standard model Higgs boson decaying to a W pair in the fully leptonic final state in pp collisions at \(\sqrt {s} = {7}\;TeV\), arXiv:1202.1489 [INSPIRE].
CMS collaboration, Search for the Higgs Boson in the Fully Leptonic W + W − Final State, PAS-HIG-11-024 (2011).
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
A. Falkowski, S. Rychkov and A. Urbano, What if the Higgs couplings to W and Z bosons are larger than in the Standard Model?, arXiv:1202.1532 [INSPIRE].
R. Rattazzi, EWSB after the first hints of a Higgs, talk given at the ETH workshop Higgs Searches confronts theory, Zurich Switzerland, 9-11 January 2012.
A. Azatov, J. Galloway and M.A. Luty, Superconformal Technicolor: Models and Phenomenology, Phys. Rev. D 85 (2012) 015018 [arXiv:1106.4815] [INSPIRE]. ADS Google Scholar
P.M. Ferreira, R. Santos, M. Sher and J.P. Silva, Implications of the LHC two-photon signal for two-Higgs-doublet models, arXiv:1112.3277 [INSPIRE].
E. Gabrielli, B. Mele and M. Raidal, Has a fermiophobic Higgs boson been detected at the LHC?, arXiv:1202.1796 [INSPIRE].
A. Azatov, R. Contino, D. Del Re, J. Galloway, M. Grassi and S. Rahatlou, Determining Higgs couplings with a model-independent analysis of h → γγ, arXiv:1204.4817 [INSPIRE].