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$g_{NK\Lambda}$ and $g_{NK\Sigma}$ from QCD Sum Rules in the $\gamma_5 \sigma_{\mu \nu}$ structure

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arxiv nucl-th/9902007 v1 pith:4HBXWQCX submitted 1999-02-02 nucl-th hep-ph

classification nucl-thhep-ph
keywords gammasigmastructureanalysisborelhyperonlambdanucleon
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The NKY coupling constant for $Y = \Lambda$ and $\Sigma$ is evaluated in a QCD sum rule calculation. We study the Borel sum rule for the three point function of one pseudoscalar one nucleon and one hyperon current up to order six in the operator product expansion. The Borel transform is performed with respect to the nucleon and hyperon momenta, which are taken to be equal. We discuss and extend the result of a previous analysis in the $\rlap{/}{q}i\gamma_5$ structure and compare it with the result obtained with the use of the $\gamma_5 \sigma_{\mu \nu}$ structure. We find that the effect of pole-continuum transitions is very important in the $\rlap{/}{q}i\gamma_5$ structure and that it changes completely results obtained in previous analysis.

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  1. Analysis of the strong vertices $\Lambda_cD^{(*)}N^*(1535)$ and $\Lambda_bB^{(*)}N^*(1535)$ in QCD sum rules

    hep-ph 2025-06 conditional novelty 5.0 of 10

    A QCD sum rule analysis produces masses, pole residues and six on-shell strong coupling constants for the ΛcD(*)N*(1535) and ΛbB(*)N*(1535) vertices.

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