arXiv · hep-ph/9908531
A combined study of $b \to s γ$ and the muon anomalous magnetic moment in gauge-mediated supersymmetry breaking models
Abstract
We study both the branching ratio for $b \to s γ$ decay and the muon anomalous magnetic moment, $a_μ \equiv (g-2)_μ /2$, in the minimal supersymmetric standard model with gauge-mediated supersymmetry breaking. Combining new experimental data on $a_μ$ and the branching ratio for $b \to s γ$, useful limits on the parameter space of these models are derived. In particular, we explicitly show that, with the presently available experimental data, constraints from the decay $b \to s γ$ are more stringent than those from $a_μ$ in broad region of the parameter space. We include the supersymmetric one-loop correction to the mass of $b$ quark, $m_b$, and find that in order to have a correct value of $m_b$, the region of large tan$β$ and $μ<0$ (in our convention) is not allowed in these models (if there are no further assumptions like $b - τ$ Yukawa coupling unification). The region of large tan$β$ and $μ>0$ is also strongly constrained. We present bounds on supersymmetric particle masses as a function of $\tan β$.
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K. T. Mahanthappa, Sechul Oh. 2000-07-04. A combined study of $b \to s γ$ and the muon anomalous magnetic moment in gauge-mediated supersymmetry breaking models. https://doi.org/10.1103/physrevd.62.015012
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