2014/05/08 by Xiao-ping Wang, Wang, Xiao-ping, Shou-hua Zhu +1
Physics and Astronomy · #FOS: Physical sciences #High Energy Physics - Phenomenology (hep-ph) #hep-ph
paper · pdf · doi:10.48550/arxiv.1405.1800
20 pages, 3 figures, 3 tables
arxiv created 2014/05/09 · arxiv updated 2014/05/12
The properties of 125 GeV new particle, which was discovered in 2012 at the Large Hadron Collider (LHC), are found to be consistent with those of the Higgs boson in the standard model (SM). Hereafter the new particle is dubbed as SM-like Higgs boson. However there is still spacious room for physics beyond the SM (BSM) due to the limited energy and luminosity of the LHC. With more data, experiments will scrutinize whether the new particle is indeed the SM one or not. At the same time, one believes that discovery of the SM-like Higgs boson is just the start of the new era of particle physics. The predominant topic is whether there are others new Higgs bosons as speculated in various BSM models. In this short review we willdescribe the current status of Higgs physics at the LHC and several BSM models which contain more Higgs sectors. In literature there are numerous studies on extended Higgs sector and a comprehensive review is beyond the scopeof this review. Instead, we will present two latest studies on Higgs physics: (1) how to detect the charged Higgs boson and measure tanβ after including the top polarization information, and (2) how todiscover the extra neutral Higgs boson via the pair production of SM-like Higgs boson.