The Higgs mass as a function of the compactification scale
arXiv:hep-ph/0305044 · doi:10.1016/S0550-3213(03)00573-X
Abstract
We calculate to a few percent precision the Higgs potential in a model with supersymmetry broken by boundary conditions on an extra-dimension, compactified to a segment of length , and a top quark quasi-localized on one of the two boundaries. 1/L alone, in the range 2-4 TeV, determines the Higgs mass, in the range 110-125 GeV, and the spectrum of gauginos, higgsinos and of the third-generation squarks. Lower values of 1/L cannot be excluded, with a progressive delocalization of the top quark.
22 pages, 6 figures
References in corpus (2)
Cited by in corpus (15)
- Maximally Natural Supersymmetry
- LHCb anomalies from a natural perspective
- Folded Supersymmetry with a Twist
- The MSSM from Scherk-Schwarz Supersymmetry Breaking
- Bubble of nothing decays of unstable theories
- Natural Scherk-Schwarz Theories of the Weak Scale
- Low-Energy D-Wave Effects in Neutral Pion Photoproduction
- Auto-Concealment of Supersymmetry in Extra Dimensions
- Dirac Vs. Majorana Neutrino Masses From a TeV Interval
- Supersoft Stops
- The MSSM on the Interval
- Relating the ElectroWeak scale to an extra dimension: constraints from ElectroWeak Precision Tests
- Rare Flavor Processes in Maximally Natural Supersymmetry
- Searching for new physics at future accelerators
- Enhanced Higgs Mass in Compact Supersymmetry