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Observability of the Lightest CMSSM Higgs Boson at Hadron Colliders

We discuss the observability of the lightest neutral Higgs boson in the constrained MSSM (CMSSM), with universal soft supersymmetry-breaking parameters, at hadron colliders such as the Tevatron and the LHC. We take account of the constraints on parameter space provided by LEP, the measured rate of b...

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Detalles Bibliográficos
Autores principales: Ellis, John R., Heinemeyer, Sven, Olive, Keith A., Weiglein, Georg
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0370-2693(01)00823-1
http://cds.cern.ch/record/499021
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author Ellis, John R.
Heinemeyer, Sven
Olive, Keith A.
Weiglein, Georg
author_facet Ellis, John R.
Heinemeyer, Sven
Olive, Keith A.
Weiglein, Georg
author_sort Ellis, John R.
collection CERN
description We discuss the observability of the lightest neutral Higgs boson in the constrained MSSM (CMSSM), with universal soft supersymmetry-breaking parameters, at hadron colliders such as the Tevatron and the LHC. We take account of the constraints on parameter space provided by LEP, the measured rate of b to s gamma decay, the cosmological relic density Omega h^2, and the recent measurement of g_mu - 2. We normalize products of the expected CMSSM Higgs production cross sections and decay branching ratios (sigma B)_CMSSM relative to those expected for a Standard Model Higgs boson of the same mass. In the h to gamma gamma channel, we find that (sigma B)_CMSSM > 0.85 (sigma B)_SM. In the W/t tbar + h, h to b bbar channels, we find that (sigma B)_CMSSM \~ 1.05 (sigma B)_SM. We conclude that the lightest CMSSM Higgs boson should be almost as easy to see as the Standard Model Higgs boson: in particular, it should be discoverable with about 15/fb of luminosity at the Tevatron or 10/fb of luminosity at the LHC.
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spelling cern-4990212023-03-12T06:00:29Zdoi:10.1016/S0370-2693(01)00823-1http://cds.cern.ch/record/499021engEllis, John R.Heinemeyer, SvenOlive, Keith A.Weiglein, GeorgObservability of the Lightest CMSSM Higgs Boson at Hadron CollidersParticle Physics - PhenomenologyWe discuss the observability of the lightest neutral Higgs boson in the constrained MSSM (CMSSM), with universal soft supersymmetry-breaking parameters, at hadron colliders such as the Tevatron and the LHC. We take account of the constraints on parameter space provided by LEP, the measured rate of b to s gamma decay, the cosmological relic density Omega h^2, and the recent measurement of g_mu - 2. We normalize products of the expected CMSSM Higgs production cross sections and decay branching ratios (sigma B)_CMSSM relative to those expected for a Standard Model Higgs boson of the same mass. In the h to gamma gamma channel, we find that (sigma B)_CMSSM > 0.85 (sigma B)_SM. In the W/t tbar + h, h to b bbar channels, we find that (sigma B)_CMSSM \~ 1.05 (sigma B)_SM. We conclude that the lightest CMSSM Higgs boson should be almost as easy to see as the Standard Model Higgs boson: in particular, it should be discoverable with about 15/fb of luminosity at the Tevatron or 10/fb of luminosity at the LHC.We discuss the observability of the lightest neutral Higgs boson in the constrained MSSM (CMSSM), with universal soft supersymmetry-breaking parameters, at hadron colliders such as the Tevatron and the LHC. We take account of the constraints on parameter space provided by LEP, the measured rate of b to s gamma decay, the cosmological relic density Omega h^2, and the recent measurement of g_mu - 2. We normalize products of the expected CMSSM Higgs production cross sections and decay branching ratios (sigma B)_CMSSM relative to those expected for a Standard Model Higgs boson of the same mass. In the h to gamma gamma channel, we find that (sigma B)_CMSSM > 0.85 (sigma B)_SM. In the W/t tbar + h, h to b bbar channels, we find that (sigma B)_CMSSM \~ 1.05 (sigma B)_SM. We conclude that the lightest CMSSM Higgs boson should be almost as easy to see as the Standard Model Higgs boson: in particular, it should be discoverable with about 15/fb of luminosity at the Tevatron or 10/fb of luminosity at the LHC.We discuss the observability of the lightest neutral Higgs boson in the constrained MSSM (CMSSM), with universal soft supersymmetry-breaking parameters, at hadron colliders such as the Tevatron and the LHC. We take account of the constraints on parameter space provided by LEP, the measured rate of b → sγ decay, the cosmological relic density Ω χ h 2 , and the recent measurement of g μ −2. We normalize products of the expected CMSSM Higgs production cross sections and decay branching ratios σ× B relative to those expected for a Standard Model Higgs boson of the same mass. In the h → γγ channel, we find that [σ(gg→h)× B (h→γγ)] CMSSM ≳0.85×[σ(gg→h)× B (h→γγ)] SM . In the W ± / t ̄ t+h,h→ b ̄ b channels, we find that [σ(W ± / t ̄ t+h)× B (h→ b ̄ b)] CMSSM ∼1.05×[σ(W ± / t ̄ t+h)× B (h→ b ̄ b)] SM . We conclude that the lightest CMSSM Higgs boson should be almost as easy to see as the Standard Model Higgs boson: in particular, it should be discoverable with about 15 fb −1 of luminosity at the Tevatron or 10 fb −1 of luminosity at the LHC.hep-ph/0105061BNL-HET-01-14CERN-TH-2001-116DCPT-01-38IPPP-01-19UMN-TH-2004-01TPI-MINN-01-18BNL-HET-2001-14CERN-TH-2001-116DCTP-2001-38IPPP-2001-19oai:cds.cern.ch:4990212001-05-07
spellingShingle Particle Physics - Phenomenology
Ellis, John R.
Heinemeyer, Sven
Olive, Keith A.
Weiglein, Georg
Observability of the Lightest CMSSM Higgs Boson at Hadron Colliders
title Observability of the Lightest CMSSM Higgs Boson at Hadron Colliders
title_full Observability of the Lightest CMSSM Higgs Boson at Hadron Colliders
title_fullStr Observability of the Lightest CMSSM Higgs Boson at Hadron Colliders
title_full_unstemmed Observability of the Lightest CMSSM Higgs Boson at Hadron Colliders
title_short Observability of the Lightest CMSSM Higgs Boson at Hadron Colliders
title_sort observability of the lightest cmssm higgs boson at hadron colliders
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/S0370-2693(01)00823-1
http://cds.cern.ch/record/499021
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AT weigleingeorg observabilityofthelightestcmssmhiggsbosonathadroncolliders