Physics Impact of GigaZ
arXiv:hep-ph/0005024 · doi:10.1016/S0370-2693(00)00749-8
Abstract
By running the prospective high-energy e^+ e^- collider TESLA in the GigaZ mode on the Z resonance, experiments can be performed on the basis of more than 10^9 Z events. They will allow the measurement of the effective electroweak mixing angle to an accuracy of approximately +- 10^-5. Likewise the W boson mass is expected to be measurable with an error of about 6 MeV near the W^+ W^- threshold. In this note, we study the accuracy with which the Higgs boson mass can be determined from loop corrections to these observables in the Standard Model. The comparison with a directly observed Higgs boson may be used to constrain new physics scales affecting the virtual loops. We also study constraints on the heavy Higgs particles predicted in the Minimal Supersymmetric Standard Model, which are very difficult to observe directly for large masses. Similarly, it is possible to constrain the mass of the heavy scalar top particle.
14 pages, 4 figures. Minor changes, version to appear in Phys. Lett. B
References in corpus (2)
Cited by in corpus (70)
- The Anatomy of Electro-Weak Symmetry Breaking. I: The Higgs boson in the Standard Model
- Physics Interplay of the LHC and the ILC
- The role of polarized positrons and electrons in revealing fundamental interactions at the Linear Collider
- Electroweak Precision Observables in the Minimal Supersymmetric Standard Model
- MSSM Higgs Physics at Higher Orders
- Precise Prediction for M_W in the MSSM
- Top Quark Seesaw, Vacuum Structure and Electroweak Precision Constraints
- Electroweak precision observables and Higgs-boson signal strengths in the Standard Model and beyond: present and future
- Electroweak two-loop corrections to the MW-MZ mass correlation in the Standard Model
- Electroweak two-loop corrections to the effective weak mixing angle
- How Can a Heavy Higgs Boson be Consistent with the Precision Electroweak Measurements?
- Charged Lepton Flavour Violation from Massive Neutrinos in Z Decays
- , Lepton Flavour Violation and Decays with Leptoquarks: Correlations and Future Prospects
- Indirect Sensitivities to the Scale of Supersymmetry
- Prediction for the Lightest Higgs Boson Mass in the CMSSM using Indirect Experimental Constraints
- Expectations for the muon g-2 in simplified models with dark matter
- Electroweak Precision Observables in the MSSM with Non-Minimal Flavor Violation
- Z Pole Observables in the MSSM
- Leading Electroweak Two-Loop Corrections to Precision Observables in the MSSM
- From the LHC to Future Colliders
- Physics Impact of a Precise Determination of the Top Quark Mass at an e+e- Linear Collider
- Meson Production around the Peak at a High Luminosity Collider
- Electroweak Precision Observables: Two-Loop Yukawa Corrections of Supersymmetric Particles
- The NLO fragmentation functions of heavy quarks into heavy quarkonia
- Boson Decays to Meson and Its Uncertainties
- Indirect Bounds on Z-> mu e and Lepton Flavor Violation at Future Colliders
- Production of the -Wave Excited -States through the Boson Decays
- The NLO QCD Corrections to Meson Production in Decays
- Precision Analysis of the Lightest MSSM Higgs Boson at Future Colliders
- Two-Parton Contribution to the Heavy-Quark Forward-Backward Asymmetry in NNLO QCD
- Further Study on the Doubly Heavy Baryon Production around the Peak at A High Luminosity Collider
- The QCD NLO Corrections to Inclusive Production in Decays
- The lightest Higgs Boson of mSUGRA, mGMSB and mAMSB at Present and Future Colliders: Observability and Precision Analyses
- Physics Opportunities with a TeV Linear Collider
- The meson production via the proton-nucleus and the nucleus-nucleus collision modes at the colliders RHIC and LHC
- Power meets Precision to explore the Symmetric Higgs Portal
- Production of a Heavy Quarkonium with a Photon or via ISR at Peak in Collider
- Excited Heavy Quarkonium Production via Z^0 Decays at a High Luminosity Collider
- Photoproduction of the heavy quarkonium at the ILC
- Exclusive charmonium production from annihilation round the peak
- LHC/LC Interplay in the MSSM Higgs Sector
- Possible Futures of Electroweak Precision: ILC, FCC-ee, and CEPC
- The Higgs Boson Production Cross Section as a Precision Observable?
- The forward-backward asymmetry for massive bottom quarks at the peak at next-to-next-to-leading order QCD
- SUSY Parameter Analysis at TeV and Planck Scales
- BEEC: An event generator for simulating the meson production at an collider
- Next-to-leading order QCD corrections for the charmonium production via the channel round the peak
- Heavy Quarkonium Production through the Semi-Exclusive Annihilation Channels around the Peak
- Composite Scalars at LEP: Constraining Technicolor Theories
- Axion-Like Particles at the ILC Giga-Z
- Physics Implications of Precision Electroweak Experiments
- corrections to the polar angle dependence of the longitudinal spin-spin correlation asymmetry in
- Photoproduction of the meson at the future colliders
- Lepton flavor violation two-body decays of quarkoniums
- Two-Loop Results for M_W in the Standard Model and the MSSM
- Higgs Physics at the LHC: Some Theory Aspects
- BEEC2.0: An Upgraded Version for the Production of Heavy Quarkonium at Electron-positron Collider
- Asymmetries in Processes of Electron-Positron Annihilation
- Physics Possibilities at a Linear Collider
- MW and sin^2θ_eff in Split SUSY: present and future expectations
- Higgs-mass predictions and electroweak precision observables in the Standard Model and the MSSM
- An SLC-type facility at a Future Circular Collider
- Predictions for Fermion Pair Production at e+e- Colliders
- Next-to-leading order QCD corrections to
- Electroweak Physics at the ILC
- Two-parton contribution to the heavy-quark A_FB at NNLO QCD in e+e- collisions
- New physics searches at a Linear Collider with polarized beams
- Oblique corrections in general dark models
- The Road Towards the ILC: Higgs, Top/QCD, Loops
- Forward-backward asymmetries of the heavy quark pair production in collisions at