arXiv · hep-ph/0407041
Muon anomaly and a lower bound on higgs mass due to a light stabilized radion in the Randall-Sundrum model
Abstract
We investigate the Randall-Sundrum model with a light stabilized radion (required to fix the size of the extra dimension) in the light of muon anomalous magnetic moment $a_μ[= \frac{(g - 2)}{2}]$. Using the recent data (obtained from the E821 experiment of the BNL collaboration) which differs by $2.6 σ$ from the Standard Model result, we obtain constraints on radion mass $\mphi$ and radion vev $\vphi$. In the presence of a radion the beta functions $β(ł)$ and $β(g_t)$ of higgs quartic coupling ($ł$) and top-Yukawa coupling ($g_t$) gets modified. We find these modified beta functions. Using these beta functions together with the anomaly constrained $\mphi$ and $\vphi$, we obtain lower bound on higgs mass $m_h$. We compare our result with the present LEP2 bound on $m_h$.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Prasanta Kumar Das. 2006-12-01. Muon anomaly and a lower bound on higgs mass due to a light stabilized radion in the Randall-Sundrum model. https://doi.org/10.1142/s0217751x06033222
Cite the original work for its findings. Save a collection to share your selection of sources.