Coupled channel analysis of the rho meson decay in lattice QCD
C. B. Lang, Daniel Mohler, Sasa Prelovsek, Matija Vidmar

TL;DR
This study uses lattice QCD with a variational approach to analyze the rho meson decay, extracting resonance parameters consistent with experimental data through phase shift analysis.
Contribution
It introduces a coupled channel lattice analysis combining $ar{q}q$ and $ ho o ext{pion-pion}$ states with advanced distillation techniques to accurately determine resonance parameters.
Findings
Resonance mass $m_\rho=792(7)(8)$ MeV consistent with experiments.
Coupling constant $g_{\rho\pi\pi}=5.13(20)$ close to experimental width.
Effective range formula describes phase shifts well.
Abstract
We employ a variational basis with a number of and lattice interpolating fields with quantum numbers of the resonance to extract the discrete energy spectrum in a finite volume. In the elastic region, this spectrum is related to the phase shift of the continuum scattering amplitude by L\"uscher's formula and the relation allows the extraction of resonance parameters from the spectrum calculation. The simulations are performed at three different total momenta of the coupled system, which allows us to extract the p-wave scattering phase at five values of pion relative momenta near the resonance region. The effective range formula describes the phase-shift dependence nicely and we extract the resonance mass MeV and the coupling at our MeV. The coupling is directly…
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