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The effective continuum threshold in dispersive sum rules

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arxiv 0902.4202 v2 pith:ITH3UCDW submitted 2009-02-24 hep-ph

classification hep-ph
keywords methodrulesaccuracyparametersbound-statecontinuumdispersiveeffective
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We study the accuracy of the bound-state parameters obtained with the method of dispersive sum rules, one of the most popular theoretical approaches in nonperturbative QCD and hadron physics. We make use of a quantum-mechanical potential model since it provides the only possibility to probe the reliability and the accuracy of this method: one obtains the bound-state parameters from sum rules and compares these results with the exact values calculated from the Schr\"odinger equation. We investigate various possibilities to fix the crucial ingredient of the method of sum rules -- the effective continuum threshold -- and propose modifications which lead to a remarkable improvement of the accuracy of the extracted ground-state parameters compared to the standard procedures adopted in the method. Although the rigorous control of systematic uncertainties in the method of sum rules remains unfeasible, the application of the proposed procedures in QCD promises a considerable increase of the actual accuracy of the extracted hadron parameters.

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Cited by 4 Pith papers

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  1. Beyond Borel Windows: A Systematic Optimization Framework for QCD Sum Rules

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    A new OPE-entropy-based optimization framework for QCD sum rule windows predicts the fully charmed 2++ tetraquark mass at 6.32 ± 0.11 GeV.

  2. Magnetic dipole moments as probes of doubly-bottom molecular pentaquarks

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    For the molecular pentaquark configurations BΣ_b, BΣ_b*, and B*Σ_b, the predicted magnetic dipole moments are 2.40, −2.84, and 5.17 nuclear magnetons respectively, with a sign and magnitude pattern sensitive to spin s...

  3. Shedding light on the nature of the $P_{cs}(4459)$ pentaquark state

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    QCD light-cone sum rules with three diquark-diquark-antiquark currents predict Pcs(4459) magnetic dipole moments of -0.60, 1.60, and 0.99 nuclear magnetons.

  4. Tetraquark-Adequate QCD Sum Rules

    hep-ph 2019-08 conditional novelty 4.0 of 10

    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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