Reinstating the 'no-lose' theorem for NMSSM Higgs discovery at the LHC
arXiv:0712.3510 · doi:10.1088/1126-6708/2008/04/090
Abstract
The simplest supersymmetric model that solves the mu problem and in which the GUT-scale parameters need not be finely tuned in order to predict the correct value of the Z boson mass at low scales is the Next-to-Minimal Supersymmetric Standard Model (NMSSM). However, in order that fine tuning be absent, the lightest CP-even Higgs boson h should have mass ~100 GeV and SM couplings to gauge bosons and fermions. The only way that this can be consistent with LEP limits is if h decays primarily via h->aa->4 tau or 4j but not 4b, where a is the lighter of the two pseudo-scalar Higgses that are present in the NMSSM. Interestingly, m_a < 2 m_b is natural in the NMSSM with m_a > 2 m_tau somewhat preferred. Thus, h -> 4 tau becomes a key mode of interest. Meanwhile, all other Higgs bosons of the NMSSM are typically quite heavy. Detection of any of the NMSSM Higgs bosons at the LHC in this preferred scenario will be very challenging using conventional channels. In this paper, we demonstrate that the h -> aa -> 4 tau decay chain should be visible if the Higgs is produced in the process pp -> p+h+p with the final state protons being measured using suitably installed forward detectors. Moreover, we show that the mass of both the h and the a can be determined on an event-by-event basis.
23 pages
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- The Leptonic Higgs as a Messenger of Dark Matter
- Discovering the Higgs with Low Mass Muon Pairs
- Radiative Upsilon decays and a light pseudoscalar Higgs in the NMSSM
- Phenomenology of the General NMSSM with Gauge Mediated Supersymmetry Breaking
- Modified Higgs Boson Phenomenology from Gauge or Gaugino Mediation in the NMSSM
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- Low mass Higgs signals at the LHC in the Next-to-Minimal Supersymmetric Standard Model
- Updated constraints from radiative decays on a light CP-odd Higgs
- Supersymmetric Higgs Singlet Effects on B-Meson FCNC Observables at Large tan(beta)
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- Radiative QCD backgrounds to exclusive H -> bb(bar) production: radiation from the screening gluon
- Central Exclusive Production of BSM Higgs bosons at the LHC
- BSM Higgs Studies at the LHC in the Forward Proton Mode
- Measuring Central Exclusive Processes at LHC
- Discovering a Nonstandard Higgs in a Standard Way
- The Next-to-Minimal Supersymmetric Standard Model: an overview
- Testing predictions for central exclusive processes in the early LHC runs