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June 4, 2026Journal of High Energy Physics0 citationsOpen Access

Pseudoscalar meson P (, , _) decays in the Standard Model and beyond

QHQuan-Yi Hu

Key Points

  • This work aims to systematically explore the decay processes of charged pseudoscalar mesons into tau neutrinos and their decay channels.
  • Utilized a model-independent low-energy effective field theory approach with four-fermion operators.
  • Calculated differential decay rates based on the final-state charged particle energy.
  • Developed a methodology to extract new physics couplings using energy moments.
  • Provided precise Standard Model predictions for differential decay rates as a function of charged particle energy.
  • Identified fixed points in normalized energy distributions that remain invariant under new physics contributions.
  • Demonstrated the potential for new physics through the characterization of new couplings.

Abstract

A bstract In this work, we have conducted a comprehensive and systematic theoretical investigation of the full cascade decays of charged pseudoscalar mesons, specifically D s, D, B, and B c, into τν τ, followed by the subsequent decay of the τ via its dominant experimentally reconstructible channels: τ → πν τ, τ → ρν τ, eₑ τ → e ν ¯ e ν τ, and τ → μ ν ¯ μ ν τ. Our study is framed within the model-independent low-energy effective field theory approach, which incorporates the most general set of four-fermion operators, including those coupling to right-handed neutrinos. We provide precise Standard Model predictions for differential decay rate as a function of the final-state charged particle energy, develop an innovative and robust methodology for extracting the magnitudes of the new physics couplings using energy moments, and identify and characterize fixed points in the normalized energy distributions. The fixed points are invariant under new physics contributions described by the considered effective Hamiltonian.

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Cite This Study

Quan-Yi Hu (2026) studied this question.

synapsesocial.com/papers/6a21164cd499ed480b16f414https://doi.org/10.1007/jhep06(2026)018
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