English

Towards the nucleon hadronic tensor from lattice QCD

High Energy Physics - Phenomenology 2020-07-01 v1 High Energy Physics - Lattice

Abstract

We present the first calculation of the hadronic tensor on the lattice for the nucleon. The hadronic tensor can be used to extract the structure functions in deep inelastic scatterings and also provide information for the neutrino-nucleon scattering which is crucial to the neutrino-nucleus scattering experiments at low energies. The most challenging part in the calculation is to solve an inverse problem. We have implemented and tested three algorithms using mock data, showing that the Bayesian Reconstruction method has the best resolution in extracting peak structures while the Backus-Gilbert and Maximum Entropy methods are somewhat more stable for the flat spectral function. Numerical results are presented for both the elastic case (clover fermions on domain wall configuration with mπm_\pi\sim 370 MeV and aa\sim 0.06 fm) and a case (anisotropic clover lattice with mπm_\pi\sim 380 MeV and ata_t\sim 0.035 fm) with large momentum transfer. For the former case, the reconstructed Minkowski hadronic tensor gives precisely the vector charge which proves the feasibility of the approach. While for the latter case, the nucleon resonances and possibly shallow inelastic scattering contributions around ν=1\nu=1 GeV are clearly observed but no information is obtained for higher excited states with ν>2\nu>2 GeV. A check of the effective masses of ρ\rho meson with different lattice setups indicates that, in order to reach higher energy transfers, using lattices with smaller lattice spacings is essential.

Keywords

Cite

@article{arxiv.1906.05312,
  title  = {Towards the nucleon hadronic tensor from lattice QCD},
  author = {Jian Liang and Terrence Draper and Keh-Fei Liu and Alexander Rothkopf and Yi-Bo Yang},
  journal= {arXiv preprint arXiv:1906.05312},
  year   = {2020}
}

Comments

22 pages, 8 figures

R2 v1 2026-06-23T09:51:57.414Z