Exploration of Extended Higgs Sectors with Run-2 Proton–Proton Collision Data at the LHC
One doublet of complex scalar fields is the minimal content of the Higgs sector in order to achieve spontaneous electroweak symmetry breaking and, in turn, to generate the masses of fundamental particles in the Standard Model. However, several theories beyond the Standard Model predict a nonminimal...
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2021
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oai:doaj.org-article:1b7bf8118e624e1384b7d39b4d140be22021-11-25T19:07:06ZExploration of Extended Higgs Sectors with Run-2 Proton–Proton Collision Data at the LHC10.3390/sym131121442073-8994https://doaj.org/article/1b7bf8118e624e1384b7d39b4d140be22021-11-01T00:00:00Zhttps://www.mdpi.com/2073-8994/13/11/2144https://doaj.org/toc/2073-8994One doublet of complex scalar fields is the minimal content of the Higgs sector in order to achieve spontaneous electroweak symmetry breaking and, in turn, to generate the masses of fundamental particles in the Standard Model. However, several theories beyond the Standard Model predict a nonminimal Higgs sector and introduce additional singlets, doublets or even higher-order weak isospin representations, thereby yielding additional Higgs bosons. With its high proton–proton collision energy (13 TeV during Run-2), the Large Hadron Collider opens a new window towards the exploration of extended Higgs sectors. This review article summarises the current state-of-the-art experimental results recently obtained in searches for new neutral and charged Higgs bosons with a partial or full Run-2 dataset.Arnaud FerrariNikolaos RompotisMDPI AGarticlephysics beyond the Standard ModelHiggs bosonsLHCATLASCMSMathematicsQA1-939ENSymmetry, Vol 13, Iss 2144, p 2144 (2021) |
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physics beyond the Standard Model Higgs bosons LHC ATLAS CMS Mathematics QA1-939 |
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physics beyond the Standard Model Higgs bosons LHC ATLAS CMS Mathematics QA1-939 Arnaud Ferrari Nikolaos Rompotis Exploration of Extended Higgs Sectors with Run-2 Proton–Proton Collision Data at the LHC |
description |
One doublet of complex scalar fields is the minimal content of the Higgs sector in order to achieve spontaneous electroweak symmetry breaking and, in turn, to generate the masses of fundamental particles in the Standard Model. However, several theories beyond the Standard Model predict a nonminimal Higgs sector and introduce additional singlets, doublets or even higher-order weak isospin representations, thereby yielding additional Higgs bosons. With its high proton–proton collision energy (13 TeV during Run-2), the Large Hadron Collider opens a new window towards the exploration of extended Higgs sectors. This review article summarises the current state-of-the-art experimental results recently obtained in searches for new neutral and charged Higgs bosons with a partial or full Run-2 dataset. |
format |
article |
author |
Arnaud Ferrari Nikolaos Rompotis |
author_facet |
Arnaud Ferrari Nikolaos Rompotis |
author_sort |
Arnaud Ferrari |
title |
Exploration of Extended Higgs Sectors with Run-2 Proton–Proton Collision Data at the LHC |
title_short |
Exploration of Extended Higgs Sectors with Run-2 Proton–Proton Collision Data at the LHC |
title_full |
Exploration of Extended Higgs Sectors with Run-2 Proton–Proton Collision Data at the LHC |
title_fullStr |
Exploration of Extended Higgs Sectors with Run-2 Proton–Proton Collision Data at the LHC |
title_full_unstemmed |
Exploration of Extended Higgs Sectors with Run-2 Proton–Proton Collision Data at the LHC |
title_sort |
exploration of extended higgs sectors with run-2 proton–proton collision data at the lhc |
publisher |
MDPI AG |
publishDate |
2021 |
url |
https://doaj.org/article/1b7bf8118e624e1384b7d39b4d140be2 |
work_keys_str_mv |
AT arnaudferrari explorationofextendedhiggssectorswithrun2protonprotoncollisiondataatthelhc AT nikolaosrompotis explorationofextendedhiggssectorswithrun2protonprotoncollisiondataatthelhc |
_version_ |
1718410263628087296 |