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Four-lepton LHC events from MSSM Higgs boson decays into neutralino and chargino pairs

Heavy neutral Higgs boson production and decay into neutralino and chargino pairs is studied at the Large Hadron Collider in the context of the Minimal Supersymmetric Standard Model. Higgs boson decays into the heavier neutralino and chargino states, i.e., H^0 or A^0 to tilde{chi}_i^0 tilde{chi}_j^0...

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Detalles Bibliográficos
Autores principales: Bisset, Mike, Li, Jun, Kersting, Nick, Lu, Ran, Moortgat, Filip, Moretti, Stefano
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1126-6708/2009/08/037
http://cds.cern.ch/record/1055641
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author Bisset, Mike
Li, Jun
Kersting, Nick
Lu, Ran
Moortgat, Filip
Moretti, Stefano
author_facet Bisset, Mike
Li, Jun
Kersting, Nick
Lu, Ran
Moortgat, Filip
Moretti, Stefano
author_sort Bisset, Mike
collection CERN
description Heavy neutral Higgs boson production and decay into neutralino and chargino pairs is studied at the Large Hadron Collider in the context of the Minimal Supersymmetric Standard Model. Higgs boson decays into the heavier neutralino and chargino states, i.e., H^0 or A^0 to tilde{chi}_i^0 tilde{chi}_j^0 (i,j = 2,3,4) as well as H^0 or A^0 to tilde{chi}_1^{pm} tilde{chi}_2^{mp}, tilde{chi}_2^+ tilde{chi}_2^- (all leading to four-lepton plus missing transverse energy final states), is found to improve the possibilities of discovering such Higgs states beyond those previously identified by considering H^0 or A^0 to tilde{chi}_2^0 tilde{chi}_2^0 decays only. In particular, H^0,A^0 bosons with quite heavy masses, approaching ~800 GeV in the so-called `decoupling region' where no clear SM signatures for the heavier MSSM Higgs bosons are known to exist, can now be discerned, for suitable but not particularly restrictive configurations of the low energy supersymmetric parameters. The high M_A discovery reach for the H^0 and A^0 may thus be greatly extended. Full event-generator level simulations, including realistic detector effects and analyses of all significant backgrounds, are performed to delineate the potential H^0,A^0 discovery regions. The wedgebox plot technique is also utilized to further analyze the 4l plus missing transverse energy signal and background events. This study marks the first thorough and reasonably complete analysis of this important class of MSSM Higgs boson signature modes. In fact, this is the first time discovery regions including all possible neutralino and chargino decay modes of the Higgs bosons have ever been mapped out.
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language eng
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spelling cern-10556412023-03-14T20:24:21Zdoi:10.1088/1126-6708/2009/08/037http://cds.cern.ch/record/1055641engBisset, MikeLi, JunKersting, NickLu, RanMoortgat, FilipMoretti, StefanoFour-lepton LHC events from MSSM Higgs boson decays into neutralino and chargino pairsParticle Physics - PhenomenologyHeavy neutral Higgs boson production and decay into neutralino and chargino pairs is studied at the Large Hadron Collider in the context of the Minimal Supersymmetric Standard Model. Higgs boson decays into the heavier neutralino and chargino states, i.e., H^0 or A^0 to tilde{chi}_i^0 tilde{chi}_j^0 (i,j = 2,3,4) as well as H^0 or A^0 to tilde{chi}_1^{pm} tilde{chi}_2^{mp}, tilde{chi}_2^+ tilde{chi}_2^- (all leading to four-lepton plus missing transverse energy final states), is found to improve the possibilities of discovering such Higgs states beyond those previously identified by considering H^0 or A^0 to tilde{chi}_2^0 tilde{chi}_2^0 decays only. In particular, H^0,A^0 bosons with quite heavy masses, approaching ~800 GeV in the so-called `decoupling region' where no clear SM signatures for the heavier MSSM Higgs bosons are known to exist, can now be discerned, for suitable but not particularly restrictive configurations of the low energy supersymmetric parameters. The high M_A discovery reach for the H^0 and A^0 may thus be greatly extended. Full event-generator level simulations, including realistic detector effects and analyses of all significant backgrounds, are performed to delineate the potential H^0,A^0 discovery regions. The wedgebox plot technique is also utilized to further analyze the 4l plus missing transverse energy signal and background events. This study marks the first thorough and reasonably complete analysis of this important class of MSSM Higgs boson signature modes. In fact, this is the first time discovery regions including all possible neutralino and chargino decay modes of the Higgs bosons have ever been mapped out.Heavy neutral Higgs boson production and decay into neutralino and chargino pairs is studied at the Large Hadron Collider in the context of the minimal supersymmetric standard model. Higgs boson decays into the heavier neutralino and chargino states, i.e.,$ H^0,A^0 \to \tilde{\chi}2^0\tilde{\chi}3^0, \tilde{\chi}2^0\tilde{\chi}4^0, \tilde{\chi}3^0\tilde{\chi}3^0, \tilde{\chi}3^0\tilde{\chi}4^0, \tilde{\chi}4^0\tilde{\chi}4^0$ as well as $H^0,A^0\to\tilde{\chi}1^{\pm}\tilde{\chi}2^{\mp},\tilde{\chi}2^+\tilde{\chi}2^−$ (all leading to four-lepton plus missing transverse energy final states), is found to improve the possibilities of discovering such Higgs states beyond those previously identified by considering $H^0,A^0\to\tilde{\chi}2^0\tilde{\chi}2^0$ decays only. In particular, $H^0,A^0$ bosons with quite heavy masses, approaching ~ 800 GeV in the so-called `decoupling region' where no clear SM signatures for the heavier MSSM Higgs bosons are known to exist, can now be discerned, for suitable but not particularly restrictive configurations of the low energy supersymmetric parameters. The high $M_A$ discovery reach for the $H^0$ and $A^0$ may thus be greatly extended. Full event-generator level simulations, including realistic detector effects and analyses of all significant backgrounds, are performed to delineate the potential $H^0,A^0$ discovery regions. The wedgebox plot technique is also utilized to further analyze the $4\iota$ plus missing transverse energy signal and background events. This study marks the first thorough and reasonably complete analysis of this important class of MSSM Higgs boson signature modes. In fact, this is the first time discovery regions including all possible neutralino and chargino decay modes of the Higgs bosons have ever been mapped out.arXiv:0709.1029TUHEP-TH-07161SCUPHY-07002SHEP-07-12TUHEP-TH-07161SCUPHY-07002SHEP-07-12oai:cds.cern.ch:10556412007-09-10
spellingShingle Particle Physics - Phenomenology
Bisset, Mike
Li, Jun
Kersting, Nick
Lu, Ran
Moortgat, Filip
Moretti, Stefano
Four-lepton LHC events from MSSM Higgs boson decays into neutralino and chargino pairs
title Four-lepton LHC events from MSSM Higgs boson decays into neutralino and chargino pairs
title_full Four-lepton LHC events from MSSM Higgs boson decays into neutralino and chargino pairs
title_fullStr Four-lepton LHC events from MSSM Higgs boson decays into neutralino and chargino pairs
title_full_unstemmed Four-lepton LHC events from MSSM Higgs boson decays into neutralino and chargino pairs
title_short Four-lepton LHC events from MSSM Higgs boson decays into neutralino and chargino pairs
title_sort four-lepton lhc events from mssm higgs boson decays into neutralino and chargino pairs
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1088/1126-6708/2009/08/037
http://cds.cern.ch/record/1055641
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