Precise measurement of hadronic tau-decays with an eta meson
K.Inami, et al (for the Belle collaboration)

TL;DR
This paper presents precise measurements of various hadronic tau decay modes involving an eta meson, using a large dataset from the Belle detector, and compares these results with theoretical models.
Contribution
It provides the most accurate branching fraction measurements for tau decays with eta mesons and sets new upper limits for several decay channels.
Findings
Measured branching fractions with improved precision
Compared results with theoretical predictions based on CVC and chiral perturbation theory
Set upper limits on less common decay modes
Abstract
We have studied hadronic tau decay modes involving an eta meson using 490 fb^{-1} of data collected with the Belle detector at the KEKB asymmetric-energy e+e- collider. The following branching fractions have been measured: B(tau- -> K- eta nu)=(1.58 +- 0.05 +- 0.09)x 10^{-4}, B(tau- -> K- pi0 eta nu)=(4.6 +- 1.1 +- 0.4)x 10^{-5}, B(tau- -> pi- pi0 eta nu)=(1.35 +- 0.03 +- 0.07)x 10^{-3}, B(tau- -> pi- KS eta nu)=(4.4 +- 0.7 +- 0.2)x 10^{-5}, and B(tau- -> K^{*-} eta nu)=(1.34 +- 0.12 +- 0.09)x 10^{-4}. These results are substantially more precise than previous measurements. The new measurements are compared with theoretical calculations based on the CVC hypothesis or the chiral perturbation theory. We also set upper limits on branching fractions for tau decays into K- KS eta nu, pi- KS pi0 eta nu, K- eta eta nu, pi- eta eta nu and non-resonant K- pi^0 eta nu final states.
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