We calculate the probability distributions of quarks in the ground state of the proton, and how they are affected in the presence of a constant background magnetic field. We focus on wave functions in the Landau and Coulomb gauges. We observe the formation of a scalar u-d diquark clustering. The overall distortion of the quark probability distribution under a very large magnetic field, as demanded by the quantization conditions on the field, is quite small. The effect is to elongate the distributions along the external field axis while localizing the remainder of the distribution.Dale S. Roberts, Patrick O. Bowman, Waseem Kamleh and Derek B. Leinwebe
Nonuniform background electromagnetic fields, once implemented in lattice quantum chromodynamics cal...
This thesis covers two subjects, briefly outlined below, of hadronic physics. The proton radius puzz...
This thesis covers two subjects, briefly outlined below, of hadronic physics. The proton radius puzz...
We calculate the wave functions of the d-quark in the ground state of the proton, and how it is affe...
The effect of a uniform background magnetic field on the wave function of the d-quark in the ground ...
The introduction of a uniform background magnetic field breaks threedimensional spatial symmetry for...
Conventional hadron interpolating fields, which utilize gauge-covariant Gaussian smearing, are ineff...
In this thesis, we detail the techniques required to perform general lattice QCD calculations. Speci...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
We present a calculation of the magnetic moment and magnetic polarisability of the nucleon. The calc...
The introduction of a uniform background magnetic field breaks threedimensional spatial symmetry for...
The introduction of a uniform background magnetic field breaks threedimensional spatial symmetry for...
Nonuniform background electromagnetic fields, once implemented in lattice quantum chromodynamics cal...
This thesis covers two subjects, briefly outlined below, of hadronic physics. The proton radius puzz...
This thesis covers two subjects, briefly outlined below, of hadronic physics. The proton radius puzz...
We calculate the wave functions of the d-quark in the ground state of the proton, and how it is affe...
The effect of a uniform background magnetic field on the wave function of the d-quark in the ground ...
The introduction of a uniform background magnetic field breaks threedimensional spatial symmetry for...
Conventional hadron interpolating fields, which utilize gauge-covariant Gaussian smearing, are ineff...
In this thesis, we detail the techniques required to perform general lattice QCD calculations. Speci...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
We present a calculation of the magnetic moment and magnetic polarisability of the nucleon. The calc...
The introduction of a uniform background magnetic field breaks threedimensional spatial symmetry for...
The introduction of a uniform background magnetic field breaks threedimensional spatial symmetry for...
Nonuniform background electromagnetic fields, once implemented in lattice quantum chromodynamics cal...
This thesis covers two subjects, briefly outlined below, of hadronic physics. The proton radius puzz...
This thesis covers two subjects, briefly outlined below, of hadronic physics. The proton radius puzz...