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Updated determination of light-cone distribution amplitudes of octet baryons in lattice QCD
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Updated determination of light-cone distribution amplitudes of octet baryons in lattice QCD
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We present updated results on the wave function normalization constants and the first moments of the light cone distribution amplitudes for the lowest-lying baryon octet. The analysis is carried out on a large number of $n_f=2+1$ lattice gauge ensembles, including ensembles at physical pion (and kaon) masses. These are spread across five different lattice spacings, enabling a controlled continuum limit. The main differences with respect to our earlier work are the use of two-loop conversion factors to an $\overline{\mathrm{MS}}$-like scheme and of an updated set of low-energy constants in the parametrization of the quark mass dependence. As a byproduct, for the first time, the anomalous dimensions for local three-quark operators with one derivative are obtained.
Forward citations
Cited by 3 Pith papers
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Renormalization of three-quark operators with up to two derivatives at three loops
Three-loop renormalization constants and anomalous dimensions are derived analytically for three-quark operators with derivatives in QCD, confirming prior N=0 results and enabling lattice matching.
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Renormalization of three-quark operators with up to two derivatives at three loops
New three-loop anomalous dimensions for N=0,1,2 three-quark operators and two-loop RI'/SMOM-to-MS conversion factors for N=1, enabling NNLO matching of lattice baryon distribution amplitudes.
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RI/SMOM renormalization for lattice QCD: bilinear and three-quark operators
A review of high-order RI'/SMOM-to-MS matching factors for lattice QCD bilinear and three-quark operators, including unpublished N=1 results.
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