English

Lattice QCD calculation of the subtraction function in forward Compton amplitude

High Energy Physics - Lattice 2025-02-04 v2 High Energy Physics - Phenomenology Nuclear Theory

Abstract

The subtraction function plays a pivotal role in calculations involving the forward Compton amplitude, which is crucial for predicting the Lamb shift in muonic atom, as well as the proton-neutron mass difference. In this work, we present a lattice QCD calculation of the subtraction function using two domain wall fermion gauge ensembles at the physical pion mass. We utilize a recently proposed subtraction point, demonstrating its advantage in mitigating statistical and systematic uncertainties by eliminating the need for ground-state subtraction. Our results reveal significant contributions from NπN\pi intermediate states to the subtraction function. Incorporating these contributions, we compute the proton, neutron and nucleon isovector subtraction functions at photon momentum transfer Q2[0,2]Q^2\in[0,2] GeV2^2. For the proton subtraction function, we compare our lattice results with chiral perturbation theory prediction at low Q2Q^2 and with the results from the perturbative operator-product expansion at high Q2Q^2. Finally, using these subtraction functions as input, we determine their contribution to two-photon exchange effects in the Lamb shift and isovector nucleon electromagnetic self-energy.

Keywords

Cite

@article{arxiv.2411.03141,
  title  = {Lattice QCD calculation of the subtraction function in forward Compton amplitude},
  author = {Yang Fu and Xu Feng and Lu-Chang Jin and Chuan Liu and Shi-Da Wen},
  journal= {arXiv preprint arXiv:2411.03141},
  year   = {2025}
}

Comments

10 pages, 10 figures; v2, accepted for publication in PRL

R2 v1 2026-06-28T19:48:59.186Z