Precision SUSY Physics
arXiv:hep-ph/0406245 · doi:10.1016/j.nuclphysbps.2004.09.053
Abstract
We review the theoretical status and the future perspectives of the most important electroweak precision observables in the MSSM. This comprises the mass of the W boson, M_W, the effective leptonic mixing angle, sin^2(theta_eff), the mass of the lightest MSSM Higgs boson, m_h, and the anomalous magnetic moment of the muon, a_μ. The impact of the parametric uncertainties from the experimental errors of the input parameters is studied, and an estimate for the remaining uncertainties from unknown higher-order corrections is given. The need for future improvements in the theory predictions is investigated.
6 pages, invited talk at "Loops & Legs in Quantum Field Theory 2004", Zinnowitz, Germany, April 2004
References in corpus (12)
- Measurement of the Negative Muon Anomalous Magnetic Moment to 0.7 ppm
- Towards High-Precision Predictions for the MSSM Higgs Sector
- Hadronic light-by-light corrections to the muon g-2: the pion-pole contribution
- Updated Estimate of the Muon Magnetic Moment Using Revised Results from e+e- Annihilation
- Precise Prediction for the W-Boson Mass in the Standard Model
- Two-Loop SUSY Corrections to the Anomalous Magnetic Moment of the Muon
- Predictions for g-2 of the muon and alpha_QED(M_Z^2)
- On the two-loop Yukawa corrections to the MSSM Higgs boson masses at large tan(beta)
- Two-loop effective potential for the minimal supersymmetric standard model
- Isospin violating effects in e+e- vs. tau measurements of the pion form factor |F_pi|^2 (s)
- Leading Electroweak Two-Loop Corrections to Precision Observables in the MSSM
- Physics Impact of a Precise Determination of the Top Quark Mass at an e+e- Linear Collider