activity
20242026
collaborators

16 papers

hep-lat2026

General Hamiltonian Approach to the -Body Finite-Volume Formalism: Extracting the Resonance Parameters from Lattice QCD

Kang Yu, Derek B. Leinweber, Anthony W. Thomas +3

We present a nonperturbative Hamiltonian framework (NPHF) to address the general -body problem. This framework rigorously connects finite-volume spectra from lattice QCD to scat…

hep-ph2026

Lattice QCD constraints on pion electroproduction off a nucleon

Yu Zhuge, Zhan-Wei Liu, Derek B. Leinweber +1

Very recently, a lattice QCD collaboration has explored threshold pion electroproduction near the physical pion mass and has simulated the relevant multipole amplitudes. Different…

hep-ph2025

Pion photoproduction of nucleon excited states with Hamiltonian effective field theory

Yu Zhuge, Dan Guo, Zhan-Wei Liu +2

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 fin…

hep-ph2025

Structure of the with Hamiltonian Effective Field Theory

Fang-Chao Han, Zhan-Wei Liu, Derek B. Leinweber +1

We investigate the internal structure of the by analyzing lattice QCD simulation and experimental data within Hamiltonian effective field theory, considering both $J^P…

hep-lat2025

Novel insight into centre-vortex geometry in four dimensions

Jackson A. Mickley, Chris Allton, Ryan Bignell +1

Centre-vortex surfaces are mapped out in four dimensions within the framework of SU(3) lattice gauge theory to understand the role of secondary loops that develop in three-dimensio…

hep-lat2025

Center vortices in the novel phase of staggered fermions

Jackson A. Mickley, Derek B. Leinweber, Daniel Nogradi

The geometry of center vortices is studied in the novel lattice-artefact phase that appears with staggered fermions to elucidate any insight provided by the center-vortex degrees o…