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Search for rare and forbidden eta(') decays
Physical Review Letters
|October 4, 2000
Summary
Researchers searched for rare eta prime meson decays using the CLEO II detector. No signals were observed, leading to new upper limits on branching fractions for several forbidden eta prime (η′) decays.
Area of Science:
- Particle Physics
- Experimental Particle Physics
- Hadron Spectroscopy
Background:
- The eta prime (η′) meson is a key player in understanding quantum chromodynamics.
- Investigating rare and forbidden decays provides crucial insights into fundamental symmetries and potential new physics.
Purpose of the Study:
- To search for and set limits on rare and forbidden decays of the eta prime (η′) meson.
- To analyze the Dalitz plot of the η′ → π⁺π⁻η decay to determine its matrix element.
Main Methods:
- Analysis of 4.80 fb⁻¹ of e⁺e⁻ collision data collected at the Cornell Electron Storage Ring using the CLEO II detector.
- Searched for specific decay channels: η′ → e⁺e⁻η, η′ → e⁺e⁻π⁰, η′ → e⁺e⁻γ, and η′ → e⁺μ⁻.
- Fitted the Dalitz plot for the η′ → π⁺π⁻η decay using a specific parametrization.
Main Results:
- No significant signals were observed for the searched rare and forbidden eta prime (η′) decays.
- Established 90% confidence level upper limits on branching fractions for these decays, with values such as B(η′ → e⁺e⁻η) < 2.4 × 10⁻³, and B(η′ → e⁺μ⁻) < 4.7 × 10⁻⁴.
- Determined the real part of the parameter α in the η′ → π⁺π⁻η decay matrix element to be Re(α) = -0.021 ± 0.025.
Conclusions:
- The absence of signals for these rare decays places stringent constraints on theoretical models.
- The measured value of Re(α) for the η′ → π⁺π⁻η decay is consistent with expectations from chiral perturbation theory.
- This study contributes to the precise characterization of eta prime (η′) meson properties and searches for new physics phenomena.