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New Constraints on Dispersive Form Factor Parameterizations from the Timelike Region

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abstract

We generalize a recent model-independent form factor parameterization derived from rigorous dispersion relations to include constraints from data in the timelike region. These constraints dictate the convergence properties of the parameterization and appear as sum rules on the parameters. We further develop a new parameterization that takes into account finiteness and asymptotic conditions on the form factor, and use it to fit to the elastic \pi electromagnetic form factor. We find that the existing world sample of timelike data gives only loose bounds on the form factor in the spacelike region, but explain how the acquisition of additional timelike data or fits to other form factors are expected to give much better results. The same parameterization is seen to fit spacelike data extremely well.

fields

hep-ph 1

years

2026 1

verdicts

UNVERDICTED 1

representative citing papers

Unitarity bounds and form-factor predictions for $B$-meson decays

hep-ph · 2026-05-25 · unverdicted · novelty 5.0

Reviews unitarity bounds for B-meson form factors, shows standard methods apply rigorously only to B→π, develops GG parametrization for general cases, and delivers combined-analysis predictions with public supplementary material.

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  • Unitarity bounds and form-factor predictions for $B$-meson decays hep-ph · 2026-05-25 · unverdicted · none · ref 89 · internal anchor

    Reviews unitarity bounds for B-meson form factors, shows standard methods apply rigorously only to B→π, develops GG parametrization for general cases, and delivers combined-analysis predictions with public supplementary material.