The standard model and beyond

[1]  C. Yang Selection Rules for the Dematerialization of a Particle into Two Photons , 1950 .

[2]  P. Zerwas,et al.  Production of Higgs bosons in proton colliders: QCD corrections , 1991 .

[3]  A. Djouadi The Anatomy of electro-weak symmetry breaking. I: The Higgs boson in the standard model , 2005, hep-ph/0503172.

[4]  F. Wilczek,et al.  Higgs-field portal into hidden sectors , 2006, hep-ph/0605188.

[5]  S. Meola,et al.  Minimal spontaneously broken hidden sector and its impact on Higgs boson physics at the Large Hadron Collider , 2008 .

[6]  M. Schumacher,et al.  Benchmark scenarios for the NMSSM , 2008, 0801.4321.

[7]  Paul Langacker,et al.  Complex Singlet Extension of the Standard Model , 2008, 0811.0393.

[8]  Gautam Bhattacharyya,et al.  A pedagogical review of electroweak symmetry breaking scenarios , 2009, 0910.5095.

[9]  A. Buras,et al.  Higgs-mediated FCNCs: natural flavour conservation vs. minimal flavour violation , 2010, 1005.5310.

[10]  M. N. Rebelo,et al.  Theory and phenomenology of two-Higgs-doublet models , 2011, 1106.0034.

[11]  D. Rebuzzi,et al.  Standard model Higgs-boson branching ratios with uncertainties , 2011, 1107.5909.

[12]  L. Hall,et al.  A natural SUSY Higgs near 125 GeV , 2011, 1112.2703.

[13]  B. Kniehl,et al.  Higgs boson mass and new physics , 2012, 1205.2893.

[14]  G. Degrassi,et al.  Higgs mass and vacuum stability in the Standard Model at NNLO , 2012, 1205.6497.

[15]  E. Eichten,et al.  A Higgs Impostor in Low-Scale Technicolor , 2012, 1210.5462.

[16]  N. Tran,et al.  Spin and parity of a single-produced resonance at the LHC , 2012, 1208.4018.

[17]  Alan D. Martin,et al.  Review of Particle Physics (RPP) , 2012 .

[18]  The Cms Collaboration Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC , 2012, 1207.7235.