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arXiv:1905.03355·v1·High Energy Physics — Lattice

The Stochastic Feynman-Hellmann Method

Arjun Singh Gambhir🇺🇸 · Evan Berkowitz🇩🇪 · David Brantley🇺🇸 · Chia Cheng Chang🇯🇵 · M.A. Clark🇺🇸 · Thorsten Kurth🇺🇸 · Chris Monahan🇺🇸 · Amy Nicholson🇺🇸 · Pavlos Vranas🇺🇸 · André Walker-Loud🇺🇸

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Abstract

The Feynman-Hellmann method, as implemented by Bouchard et al. [1612.06963], was recently employed successfully to determine the nucleon axial charge. A limitation of the method was the restriction to a single operator and a single momentum during the computation of each "Feynman- Hellmann" propagator. By using stochastic techniques to estimate the all-to-all propagator, we relax this constraint and demonstrate the successful implementation of this new method. We show reproduction of the axial charge on a test ensemble and non-zero momentum transfer points of the axial and vector form factors.

Comments: 7 pages, 5 figures, Proceedings for The 36th International Symposium on Lattice Field Theory

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