Quantum Chromodynamics (QCD) is generally assumed to be the fundamental theory underlying nuclear physics. In recent years there is progress towards investigating the nucleon structure from first principles of QCD. Although this structure is best revealed in Deep Inelastic Scattering, a consistent analysis has to be performed in a fully non-perturbative scheme. The only known method for this purpose are lattice simulations. We first sketch the ideas of Monte Carlo simulations in lattice gauge theory. Then we comment in particular on the issues of chiral symmetry and operator mixing. Finally we present our results for the Bjorken variable of a single quark, and for the second Nachtmann moment of the nucleon structure functions
The role of gluons in the structure of the nucleon and light nuclei is investigated using lattice qu...
One way of avoiding the complex action problem in lattice QCD at non-zero density is to simulate QCD...
Within the framework of quenched lattice QCD and using O(a) improved Wilson fermions and non-perturb...
Quantum Chromodynamics (QCD) is generally assumed to be the fundamental theory underlying nuclear ph...
Quantum Chromodynamics (QCD) is generally assumed to be the fundamental theory underlying nuclear ph...
We present an exploratory study of chiral effective theories of nuclei with methods adopted from lat...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2010.Cataloged from PDF ve...
Using unimproved and non-perturbatively O(a) improved Wilson fermions, results are given for the thr...
A review of recent nucleon structure calculations within lattice QCD is presented. The nucleon excit...
A few chosen nucleon properties are described from a lattice QCD perspective: the nucleon sigma term...
In this work, we compute various nucleon structure observables using the lattice regularization of q...
Quantum chromodynamics (QCD) is the fundamental theory that describes the interaction of quarks and ...
We present recent developments in lattice QCD simulations as applied in the study of hadron structur...
We investigate aspects of the structure of different baryons via simulations of quantum chromodynami...
We present recent developments in lattice QCD simulations as applied in the study of hadron structur...
The role of gluons in the structure of the nucleon and light nuclei is investigated using lattice qu...
One way of avoiding the complex action problem in lattice QCD at non-zero density is to simulate QCD...
Within the framework of quenched lattice QCD and using O(a) improved Wilson fermions and non-perturb...
Quantum Chromodynamics (QCD) is generally assumed to be the fundamental theory underlying nuclear ph...
Quantum Chromodynamics (QCD) is generally assumed to be the fundamental theory underlying nuclear ph...
We present an exploratory study of chiral effective theories of nuclei with methods adopted from lat...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2010.Cataloged from PDF ve...
Using unimproved and non-perturbatively O(a) improved Wilson fermions, results are given for the thr...
A review of recent nucleon structure calculations within lattice QCD is presented. The nucleon excit...
A few chosen nucleon properties are described from a lattice QCD perspective: the nucleon sigma term...
In this work, we compute various nucleon structure observables using the lattice regularization of q...
Quantum chromodynamics (QCD) is the fundamental theory that describes the interaction of quarks and ...
We present recent developments in lattice QCD simulations as applied in the study of hadron structur...
We investigate aspects of the structure of different baryons via simulations of quantum chromodynami...
We present recent developments in lattice QCD simulations as applied in the study of hadron structur...
The role of gluons in the structure of the nucleon and light nuclei is investigated using lattice qu...
One way of avoiding the complex action problem in lattice QCD at non-zero density is to simulate QCD...
Within the framework of quenched lattice QCD and using O(a) improved Wilson fermions and non-perturb...