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Extraction of ground-state decay constant from dispersive sum rules: QCD vs potential models

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abstract

We compare the extraction of the ground-state decay constant from the two-point correlator in QCD and in potential models and show that the results obtained at each step of the extraction procedure follow a very similar pattern. We prove that allowing for a Borel-parameter-dependent effective continuum threshold yields two essential improvements compared to employing a Borel-parameter-independent quantity: (i) It reduces considerably the (unphysical) dependence of the extracted bound-state mass and the decay constant on the Borel parameter. (ii) In a potential model, where the actual value of the decay constant is known from the Schroedinger equation, a Borel-parameter-dependent threshold leads to an improvement of the accuracy of the extraction procedure. Our findings suggest that in QCD a Borel-parameter dependent threshold leads to a more reliable and accurate determination of bound-state characteristics by the method of sum rules.

fields

hep-ph 1

years

2019 1

verdicts

CONDITIONAL 1

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Tetraquark-Adequate QCD Sum Rules

hep-ph · 2019-08-23 · conditional · novelty 4.0

QCD sum rules for tetraquarks should exclude unconnected meson-meson contributions; the corrected rules retain only diagrams of order alpha_s^2 or higher.

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  • Tetraquark-Adequate QCD Sum Rules hep-ph · 2019-08-23 · conditional · none · ref 5 · internal anchor

    QCD sum rules for tetraquarks should exclude unconnected meson-meson contributions; the corrected rules retain only diagrams of order alpha_s^2 or higher.