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Axial Nucleon and Nucleon to Delta form fractors and the Goldberger-Treiman Relations from Lattice QCD

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arxiv 0706.3011 v1 pith:PZH2N7EI submitted 2007-06-20 hep-lat

classification hep-lat
keywords formdeltanucleonfactorfactorsfermionsgoldberger-treimanquark
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We evaluate the nucleon axial form factor, $G_A(q^2)$, and induced pseudoscalar form factor, $G_p(q^2)$, as well as the pion-nucleon form factor, $G_{\pi N N}(q^2)$, in lattice QCD. We also evaluate the corresponding nucleon to $\Delta$ transition form factors, $C_5^A(q^2)$ and $C_6^A(q^2)$, and the pion-nucleon-$\Delta$ form factor $G_{\pi N\Delta}(q^2)$. The nucleon form factors are evaluated in the quenched theory and with two degenerate flavors of dynamical Wilson fermions. The nucleon to $\Delta$ form factors, besides Wilson fermions, are evaluated using domain wall valence fermions with staggered sea quark configurations for pion masses as low as about 350 MeV. Using these form factors, together with an evaluation of the renormalized quark mass, we investigate the validity of the diagonal and non-diagonal Goldberger-Treiman relations. The ratios $G_{\pi N\Delta}(q^2)/G_{\pi NN}(q^2)$ and $2C_5^A(q^2)/G_A(q^2)$ are constant as a function of the momentum transfer squared and show almost no dependence on the quark mass. We confirm equality of these two ratios consistent with the Goldberger-Treiman relations extracting a mean value of $1.61(2)$.

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Cited by 2 Pith papers

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  1. Relativistic energy-momentum tensor distributions in a polarized nucleon

    hep-ph 2025-03 unverdicted novelty 6.0 of 10

    Relativistic EMT distributions in polarized nucleons recover good and bad light-front components in the IMF after including polarization effects.

  2. Isovector axial and pseudoscalar form factors from twisted mass lattice QCD at the physical point

    hep-lat 2025-02 conditional novelty 3.0 of 10

    From three physical-point twisted mass ensembles, the authors extract g_A, the axial radius, g_P^* and g_piNN in the continuum limit and report that PCAC and pion pole dominance hold.

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