Revisit to Non-decoupling MSSM
arXiv:1211.2427 · doi:10.1016/j.physletb.2013.04.056
Abstract
Dipole operator requires the helicity flip in the involving quark states thus the breaking of chiral . On the other hand, the -quark mass generation is also a consequence of chiral symmetry breaking. Therefore, in many models, there might be strong correlation between the and quark Yukawa coupling. We use non-decoupling MSSM model to illustrate this feature. The light Higgs boson may evade the direct search experiments at LEPII or Tevatron while the 125 GeV Higgs-like boson is identified as the heavy Higgs boson in the spectrum. A light charged Higgs is close to the heavy Higgs boson which is of 125 GeV and its contribution to requires large supersymmetric correction with large PQ and symmetry breaking. The large supersymmetric contribution at the same time significantly modifies the quark Yukawa co upling. With combined flavor constraints and and direct constraints on Higgs properties, we find best fit scenarios with light stop of (500 GeV), negative around -750 GeV and large -term of 2-3 TeV. In addition, reduction in partial width may also result in large enhancement of decay branching fraction. Large parameter region in the survival space under all bounds may be further constrained by if no excess of is confirmed at LHC. We only identify a small parameter region with significant decay that is consistent with all bounds and reduced decay branching fraction.
18pages, 6 figures
References in corpus (16)
- Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC
- Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC
- Dark Matter Results from 225 Live Days of XENON100 Data
- Estimate of BR(B -> X_s gamma) at O(alpha_s^2)
- Indirect search for dark matter with micrOMEGAs2.4
- Probing New Physics via the Effective Lifetime
- Hints of large tan(beta) in flavour physics
- Branching Ratio Measurements of Decays
- Light Stau Phenomenology and the Higgs γγRate
- Search for charged Higgs bosons decaying via H+ -> tau nu in top quark pair events using pp collision data at sqrt(s) = 7 TeV with the ATLAS detector
- The Higgs sector of the phenomenological MSSM in the light of the Higgs boson discovery
- MSSM Higgs Bosons at The LHC
- Higgs Signal for h to aa at Hadron Colliders
- Precise predictions for h_a --> h_b h_c decays in the complex MSSM
- Light MSSM Higgs boson scenario and its test at hadron colliders
- The Interplay Between Collider Searches For Supersymmetric Higgs Bosons and Direct Dark Matter Experiments
Cited by in corpus (17)
- Probing the Standard Model with Higgs signal rates from the Tevatron, the LHC and a future ILC
- A light Higgs scalar in the NMSSM confronted with the latest LHC Higgs data
- Light Neutralino Dark Matter: Direct/Indirect Detection and Collider Searches
- Low-Mass Higgs Bosons in the NMSSM and Their LHC Implications
- Pair production of a 125 GeV Higgs boson in MSSM and NMSSM at the ILC
- Non-Decoupling MSSM Higgs Sector and Light Superpartners
- Implications of 98 GeV and 125 GeV Higgs scenario in non-decoupling SUSY with updated ATLAS, CMS and PLANCK data
- Mass Spectrum and Higgs Profile in BLSSM
- Pair production of 125 GeV Higgs boson in the SM extension with color-octet scalars at the LHC
- Light Top Squark in Precision Top Quark Sample
- Eviction of a 125 GeV "heavy"-Higgs from the MSSM
- Invisible decays of low mass Higgs bosons in supersymmetric models
- Single (anti-)top quark production in association with a lightest neutralino at LHeC
- The 28 GeV Dimuon Excess in Lepton Specific 2HDM
- MSSM with GeV in High-Scale Gauge Mediation
- Improved -weapons for Higgs hunting
- Higgs Precision Measurements and Flavor Physics: A Supersymmetric Example