The $\pi\gamma \to \pi\pi$ transition and the $\rho$ radiative decay width from lattice QCD
Constantia Alexandrou, Luka Leskovec, Stefan Meinel, John Negele,, Srijit Paul, Marcus Petschlies, Andrew Pochinsky, Gumaro Rendon, Sergey, Syritsyn

TL;DR
This paper uses lattice QCD to calculate the $ ho$ meson radiative decay width by analyzing the $ ho$ resonance through the $ ho o ho o ho$ transition amplitude, providing new insights into hadronic structure.
Contribution
It presents the first lattice QCD determination of the $ ho$ radiative decay width via the $ ho o ho o ext{transition}$ amplitude, including analytic continuation to the resonance pole.
Findings
Calculated the $ ho$ meson photocoupling $|G_{ ho o ext{photon}}|=0.0802(32)(20)$
Mapped the $ ho$ resonance transition amplitude across various kinematic points
Provided a model-independent analysis of the $ ho$ resonance electromagnetic transition
Abstract
We report a lattice QCD determination of the transition amplitude for the -wave, two-pion final state, as a function of the photon virtuality and invariant mass. The calculation was performed with flavors of clover fermions at a pion mass of approximately MeV, on a lattice with fm. We construct the necessary correlation functions using a combination of smeared forward, sequential and stochastic propagators, and determine the finite-volume matrix elements for all momenta up to and all associated irreducible representations. In the mapping of the finite-volume to infinite-volume matrix elements using the Lellouch-L\"uscher factor, we consider two different parametrizations of the scattering phase shift. We fit the and dependence of the…
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