The introduction of a uniform background magnetic field breaks threedimensional spatial symmetry for a charged particle and introduces Landau mode effects. Standard quark operators are inefficient at isolating the nucleon correlation function at nontrivial field strengths. We introduce novel quark operators constructed from the twodimensional Laplacian eigenmodes that describe a charged particle on a finite lattice. These eigenmode-projected quark operators provide enhanced precision for calculating nucleon energy shifts in a magnetic field. Preliminary results are obtained for the neutron and proton magnetic polarisabilities using these methods.Waseem Kamleh, Ryan Bignell, Derek B. Leinweber, and Matthias Burkard
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
We present results for the magnetic moment and magnetic polarizability of the neutron and the magnet...
Electromagnetic properties of the nucleon are explored with lattice QCD using a novel technique. Foc...
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...
The application of a uniform background magnetic field makes standard quark operators utilizing gaug...
Conventional hadron interpolating fields, which utilize gauge-covariant Gaussian smearing, are ineff...
The magnetic polarisability of a selection of octet baryons and the pion are calculated using lattic...
We present a calculation of the magnetic moment and magnetic polarisability of the nucleon. The calc...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
We calculate the probability distributions of quarks in the ground state of the proton, and how they...
We calculate the wave functions of the d-quark in the ground state of the proton, and how it is affe...
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...
Available online 15 October 2020The magnetic polarisability is a fundamental property of hadrons, wh...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
We present results for the magnetic moment and magnetic polarizability of the neutron and the magnet...
Electromagnetic properties of the nucleon are explored with lattice QCD using a novel technique. Foc...
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...
The application of a uniform background magnetic field makes standard quark operators utilizing gaug...
Conventional hadron interpolating fields, which utilize gauge-covariant Gaussian smearing, are ineff...
The magnetic polarisability of a selection of octet baryons and the pion are calculated using lattic...
We present a calculation of the magnetic moment and magnetic polarisability of the nucleon. The calc...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
We calculate the probability distributions of quarks in the ground state of the proton, and how they...
We calculate the wave functions of the d-quark in the ground state of the proton, and how it is affe...
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...
Available online 15 October 2020The magnetic polarisability is a fundamental property of hadrons, wh...
Background field methods offer an approach through which fundamental non-perturbative hadronic prope...
We present results for the magnetic moment and magnetic polarizability of the neutron and the magnet...
Electromagnetic properties of the nucleon are explored with lattice QCD using a novel technique. Foc...