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arXiv:2305.05491·v2·High Energy Physics — Lattice

Feynman--Hellmann approach to transition matrix elements and quasi-degenerate energy states

M. Batelaan🇦🇺 · K.U. Can🇦🇺 · R. Horsley🇬🇧 · Y. Nakamura🇯🇵 · P.E.L. Rakow🇬🇧 · G. Schierholz🇩🇪 · H. Stüben🇩🇪 · R.D. Young🇦🇺 · J.M. Zanotti🇦🇺

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Abstract

The Feynman--Hellmann approach to computing matrix elements in lattice QCD by first adding a perturbing operator to the action is described using the transition matrix and the Dyson expansion formalism. This perturbs the energies in the two-point baryon correlation function, from which the matrix element can be obtained. In particular at leading order in the perturbation we need to diagonalise a matrix of near-degenerate energies. While the method is general for all hadrons, we apply it here to a study of a Sigma to Nucleon baryon transition vector matrix element.

Comments: 50 pages. Minor typos fixed. Published version

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