The calculation of quark propagators for Ginsparg-Wilson-type Dirac operators is costly and thus limited to a few different sources. We present a new approach for determining spatially optimized operators for lattice spectroscopy of excited hadrons. Jacobi smeared quark sources with different widths are combined to construct hadron operators with different spatial wave functions. We study the Roper state and excited rho and pion mesons
We propose to replace ordinary propagators in lattice operator correlations entering the determinati...
Progress in computing the spectrum of excited baryons and mesons in lattice QCD is described. Our fi...
We present results for the spectrum of excited mesons obtained from temporal correlations of spatial...
Whereas ground state spectroscopy for quenched QCD is well understood, it is still a challenge to ob...
We study baryons on the lattice with a special focus on excited states. For that purpose we construc...
Progress in computing the spectrum of excited baryons and mesons in lattice QCD is described. Large ...
Progress in computing the spectrum of excited baryons and mesons in lattice QCD is described. Large ...
Progress in calculating the spectrum of excited baryons and mesons in lattice QCD is described. Corr...
The construction of the operators and correlators required to determine the excited baryon spectrum ...
We present results for masses of excited mesons from quenched calculations using chirally improved q...
We study mesons on the lattice with a special focus on excited states. For that purpose we construct...
In this thesis, we detail the techniques required to perform general lattice QCD calculations. Speci...
Determining the spectrum of hadronic excitations from Monte Carlo simulations requires the use of in...
Multihadron operators are crucial for reliably extracting the masses of excited states lying above m...
We present results for masses of excited baryons from a quenched calculation with Chirally Improved ...
We propose to replace ordinary propagators in lattice operator correlations entering the determinati...
Progress in computing the spectrum of excited baryons and mesons in lattice QCD is described. Our fi...
We present results for the spectrum of excited mesons obtained from temporal correlations of spatial...
Whereas ground state spectroscopy for quenched QCD is well understood, it is still a challenge to ob...
We study baryons on the lattice with a special focus on excited states. For that purpose we construc...
Progress in computing the spectrum of excited baryons and mesons in lattice QCD is described. Large ...
Progress in computing the spectrum of excited baryons and mesons in lattice QCD is described. Large ...
Progress in calculating the spectrum of excited baryons and mesons in lattice QCD is described. Corr...
The construction of the operators and correlators required to determine the excited baryon spectrum ...
We present results for masses of excited mesons from quenched calculations using chirally improved q...
We study mesons on the lattice with a special focus on excited states. For that purpose we construct...
In this thesis, we detail the techniques required to perform general lattice QCD calculations. Speci...
Determining the spectrum of hadronic excitations from Monte Carlo simulations requires the use of in...
Multihadron operators are crucial for reliably extracting the masses of excited states lying above m...
We present results for masses of excited baryons from a quenched calculation with Chirally Improved ...
We propose to replace ordinary propagators in lattice operator correlations entering the determinati...
Progress in computing the spectrum of excited baryons and mesons in lattice QCD is described. Our fi...
We present results for the spectrum of excited mesons obtained from temporal correlations of spatial...