Pion photoproduction of nucleon excited states with Hamiltonian effective field theory

Fuente: arXiv
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Main Authors: Zhuge, Yu, Guo, Dan, Liu, Zhan-Wei, Leinweber, Derek B., Thomas, Anthony W.
Format: Preprint
Published: 2025
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author Zhuge, Yu
Guo, Dan
Liu, Zhan-Wei
Leinweber, Derek B.
Thomas, Anthony W.
author_facet Zhuge, Yu
Guo, Dan
Liu, Zhan-Wei
Leinweber, Derek B.
Thomas, Anthony W.
contents Over the past few years, Hamiltonian effective field theory has been successfully applied to studies of nucleon and hyperon excited states. By discretizing the Hamiltonian in a finite volume, one can obtain the energy spectrum and compare it with the results calculated from lattice QCD. Through the analysis of experimental data, Hamiltonian effective field theory provides a framework that connects the finite-volume spectra from lattice QCD to infinite-volume scattering observables. The model independence of the approach is well preserved under the combined constraints from lattice QCD and experimental data. Building on these developments, recent works have attempted to extend HEFT to electromagnetic processes. Meanwhile, lattice QCD has also gradually advanced into the study of electromagnetic interactions. The combination of these analyses will undoubtedly deepen our understanding of light resonances.
format Preprint
id arxiv_https___arxiv_org_abs_2511_22479
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Pion photoproduction of nucleon excited states with Hamiltonian effective field theory
Zhuge, Yu
Guo, Dan
Liu, Zhan-Wei
Leinweber, Derek B.
Thomas, Anthony W.
High Energy Physics - Phenomenology
High Energy Physics - Lattice
Over the past few years, Hamiltonian effective field theory has been successfully applied to studies of nucleon and hyperon excited states. By discretizing the Hamiltonian in a finite volume, one can obtain the energy spectrum and compare it with the results calculated from lattice QCD. Through the analysis of experimental data, Hamiltonian effective field theory provides a framework that connects the finite-volume spectra from lattice QCD to infinite-volume scattering observables. The model independence of the approach is well preserved under the combined constraints from lattice QCD and experimental data. Building on these developments, recent works have attempted to extend HEFT to electromagnetic processes. Meanwhile, lattice QCD has also gradually advanced into the study of electromagnetic interactions. The combination of these analyses will undoubtedly deepen our understanding of light resonances.
title Pion photoproduction of nucleon excited states with Hamiltonian effective field theory
topic High Energy Physics - Phenomenology
High Energy Physics - Lattice
url https://arxiv.org/abs/2511.22479