Utilising lattice Quantum Chromodynamics (QCD) to calculate nucleon matrix elements allows us to gain great insight into the internal structure of baryons that would be prohibitively diffcult to access in physical experiments. We can extract the electromagnetic and tensor form factors for not only the proton but also the heavier octet baryons, including the sigma ∑ and cascade ≡ baryons. By utilising the properties of SU(3) flavour breaking in a new method only recently published, we extrapolate our electromagnetic and tensor form factors to the physical point. We also investigate the transverse spin-dependent quark densities and how the choice of baryon spin and quark spin polarisation affects the distribution of quarks in a plane transver...
The electromagnetic properties of the baryon octet are calculated in quenched QCD on a 203×40 lattic...
We present the first calculation in lattice QCD of the lowest two moments of transverse spin densiti...
In this work, we extend and apply effective field theory techniques to systematically understand a s...
We present results from the QCDSF/UKQCD collaboration for the transverse spin densities of octet bar...
Quantum Chromodynamics (QCD) is the theory of strong interactions, one of the four fundamental force...
Using lattice QCD, we calculate the twist-2 contribution a2 to the third Mellin moment of the spin s...
Using lattice QCD, we calculate the twist-2 contribution a2 to the third Mellin moment of the spin s...
Using lattice QCD, we calculate the twist-2 contribution a2 to the third Mellin moment of the spin s...
Using lattice QCD, we calculate the twist-2 contribution a2 to the third Mellin moment of the spin s...
Quantum Chromodynamics (QCD) is the theory of strong interactions, one of the four fundamental force...
© Copyright owned by the author(s). We present results from the QCDSF/UKQCD collaboration for the tr...
This thesis gives details and results of calculations of form factors for a number of $b\to c$ trans...
The QCDSF/UKQCD collaboration has an ongoing program to calculate nucleon matrix elements with two f...
Baryons such as the proton and neutron make up the large majority of all visible matter in the unive...
The composition and structure of matter has excited scientific thought for millennia. One of the hig...
The electromagnetic properties of the baryon octet are calculated in quenched QCD on a 203×40 lattic...
We present the first calculation in lattice QCD of the lowest two moments of transverse spin densiti...
In this work, we extend and apply effective field theory techniques to systematically understand a s...
We present results from the QCDSF/UKQCD collaboration for the transverse spin densities of octet bar...
Quantum Chromodynamics (QCD) is the theory of strong interactions, one of the four fundamental force...
Using lattice QCD, we calculate the twist-2 contribution a2 to the third Mellin moment of the spin s...
Using lattice QCD, we calculate the twist-2 contribution a2 to the third Mellin moment of the spin s...
Using lattice QCD, we calculate the twist-2 contribution a2 to the third Mellin moment of the spin s...
Using lattice QCD, we calculate the twist-2 contribution a2 to the third Mellin moment of the spin s...
Quantum Chromodynamics (QCD) is the theory of strong interactions, one of the four fundamental force...
© Copyright owned by the author(s). We present results from the QCDSF/UKQCD collaboration for the tr...
This thesis gives details and results of calculations of form factors for a number of $b\to c$ trans...
The QCDSF/UKQCD collaboration has an ongoing program to calculate nucleon matrix elements with two f...
Baryons such as the proton and neutron make up the large majority of all visible matter in the unive...
The composition and structure of matter has excited scientific thought for millennia. One of the hig...
The electromagnetic properties of the baryon octet are calculated in quenched QCD on a 203×40 lattic...
We present the first calculation in lattice QCD of the lowest two moments of transverse spin densiti...
In this work, we extend and apply effective field theory techniques to systematically understand a s...