paper

Estimate of the branching fraction , the , and non-standard weak interactions

arXiv:0806.3922 · doi:10.1103/PhysRevD.78.033006

Abstract

We consider the ``second-class current'' decay from several points of view. We first focus on the decay rate as expected within standard weak interaction and QCD due to isospin violation. The decay contributions divide into - and -wave parts. The former can be reliably estimated using the coupling inferred from the rates and Dalitz-plot distributions of decays. The somewhat larger -wave part, which was previously computed using chiral perturbation theory, is estimated from a simple model. Both estimates of the -wave part depend on whether the scalar particle is a or some other (4-quark) state. Finally, we discuss genuinely new, non- scalar weak interactions. The decay provides information on this question, which nicely complements that from precision decay experiments. % In summary, we discuss the possible implications of putative values of the branching fraction . In the case of larger values, in particular of the -wave part, not only will detection of the decay be more likely and more reliable, its implications will be more far-reaching and interesting.

13 pages

Estimate of the branching fraction $τ^- \to ηπ^-ν_τ$, the $a_0^-(980)$, and non-standard weak interactions · wovepaper