The forward Compton amplitude describes the process of virtual photon scattering from a hadron and provides an essential ingredient for the understanding of hadron structure. As a physical amplitude, the Compton tensor naturally includes all target mass corrections and higher twist effects at a fixed virtuality, $Q^2$. By making use of the second-order Feynman-Hellmann theorem, the nucleon Compton tensor is calculated in lattice QCD at an unphysical quark mass across a range of photon momenta $3 \lesssim Q^2 \lesssim 7$ GeV$^2$. This allows for the $Q^2$ dependence of the low moments of the nucleon structure functions to be studied in a lattice calculation for the first time. The results demonstrate that a systematic investigation of power ...
Lattice QCD calculations of the nucleon electromagnetic form factors are of interest at both the hig...
I give a brief account of the status and perspectives of lattice calculations of the light-front wav...
The vast majority of visible matter in the universe is made up of protons and neutrons, the fundame...
The forward Compton amplitude describes the process of virtual photon scattering from a hadron and p...
We highlight QCDSF/UKQCD Collaboration's recent developments on computing the Compton amplitude dire...
In both experiment and theory, Compton scattering provides a unique window into the internal structu...
The partonic structure of hadrons plays an important role in a vast array of high-energy and nuclear...
Theoretical predictions of the proton-neutron mass difference and measurements of the proton's charg...
We report on the use of Feynman-Hellmann techniques to calculate the off-forward Compton amplitude (...
We determine the properties of generalised parton distributions (GPDs) from a lattice QCD calculatio...
Baryons such as the proton and neutron make up the large majority of all visible matter in the unive...
We determine the properties of generalized parton distributions (GPDs) from a lattice QCD calculatio...
We present a simultaneous extraction of the moments of F2 and FL structure functions of the proton f...
We have initiated a program to compute the Compton amplitude from lattice QCD with the Feynman-Hellm...
Accessing hadronic form factors at large momentum transfers has traditionally presented a challenge ...
Lattice QCD calculations of the nucleon electromagnetic form factors are of interest at both the hig...
I give a brief account of the status and perspectives of lattice calculations of the light-front wav...
The vast majority of visible matter in the universe is made up of protons and neutrons, the fundame...
The forward Compton amplitude describes the process of virtual photon scattering from a hadron and p...
We highlight QCDSF/UKQCD Collaboration's recent developments on computing the Compton amplitude dire...
In both experiment and theory, Compton scattering provides a unique window into the internal structu...
The partonic structure of hadrons plays an important role in a vast array of high-energy and nuclear...
Theoretical predictions of the proton-neutron mass difference and measurements of the proton's charg...
We report on the use of Feynman-Hellmann techniques to calculate the off-forward Compton amplitude (...
We determine the properties of generalised parton distributions (GPDs) from a lattice QCD calculatio...
Baryons such as the proton and neutron make up the large majority of all visible matter in the unive...
We determine the properties of generalized parton distributions (GPDs) from a lattice QCD calculatio...
We present a simultaneous extraction of the moments of F2 and FL structure functions of the proton f...
We have initiated a program to compute the Compton amplitude from lattice QCD with the Feynman-Hellm...
Accessing hadronic form factors at large momentum transfers has traditionally presented a challenge ...
Lattice QCD calculations of the nucleon electromagnetic form factors are of interest at both the hig...
I give a brief account of the status and perspectives of lattice calculations of the light-front wav...
The vast majority of visible matter in the universe is made up of protons and neutrons, the fundame...