AbstractWe study the performance of all-mode-averaging (AMA) when used in conjunction with a locally deflated SAP-preconditioned solver, determining how to optimize the local block sizes and number of deflation fields in order to minimize the computational cost for a given level of overall statistical accuracy. We find that AMA enables a reduction of the statistical error on nucleon charges by a factor of around two at the same cost when compared to the standard method. As a demonstration, we compute the axial, scalar and tensor charges of the nucleon in Nf=2 lattice QCD with non-perturbatively O(a)-improved Wilson quarks, using O(10,000) measurements to pursue the signal out to source-sink separations of ts∼1.5 fm. Our results suggest that...
We present 2+1 flavor lattice QCD calculations of the nucleon scalar and tensor charges. Using the B...
The current status of calculations of simple nucleon structure observables is reviewed, with a focus...
dCurrent address: Jefferson Lab. We present a dedicated analysis of the influence of excited states ...
AbstractWe study the performance of all-mode-averaging (AMA) when used in conjunction with a locally...
Utilising lattice QCD to calculate nucleon matrix elements has had a huge impact on the knowledge of...
International audienceWe calculate the scalar and tensor charges of the nucleon in 2+1-flavor lattic...
We present a detailed analysis of methods to reduce statistical errors and excited-state contaminati...
We report on a lattice QCD calculation of the nucleon axial charge, $g_A$, using M\'{o}bius Domain-W...
We present results from a lattice QCD study of nucleon matrix elements at vanishing momentum transfe...
We present results from a lattice QCD study of nucleon matrix elements at vanishing momentum transfe...
In this work, we compute various nucleon structure observables using the lattice regularization of q...
We report on preliminary results of a high statistics quenched lattice QCD calculation of nucleon ma...
The extraction of hadron matrix elements in lattice QCD using the standard two- and three-point corr...
Thesis: S.B., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PDF ...
We report on lattice QCD calculations of the nucleon isovector axial, scalar, and tensor charges. Ou...
We present 2+1 flavor lattice QCD calculations of the nucleon scalar and tensor charges. Using the B...
The current status of calculations of simple nucleon structure observables is reviewed, with a focus...
dCurrent address: Jefferson Lab. We present a dedicated analysis of the influence of excited states ...
AbstractWe study the performance of all-mode-averaging (AMA) when used in conjunction with a locally...
Utilising lattice QCD to calculate nucleon matrix elements has had a huge impact on the knowledge of...
International audienceWe calculate the scalar and tensor charges of the nucleon in 2+1-flavor lattic...
We present a detailed analysis of methods to reduce statistical errors and excited-state contaminati...
We report on a lattice QCD calculation of the nucleon axial charge, $g_A$, using M\'{o}bius Domain-W...
We present results from a lattice QCD study of nucleon matrix elements at vanishing momentum transfe...
We present results from a lattice QCD study of nucleon matrix elements at vanishing momentum transfe...
In this work, we compute various nucleon structure observables using the lattice regularization of q...
We report on preliminary results of a high statistics quenched lattice QCD calculation of nucleon ma...
The extraction of hadron matrix elements in lattice QCD using the standard two- and three-point corr...
Thesis: S.B., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PDF ...
We report on lattice QCD calculations of the nucleon isovector axial, scalar, and tensor charges. Ou...
We present 2+1 flavor lattice QCD calculations of the nucleon scalar and tensor charges. Using the B...
The current status of calculations of simple nucleon structure observables is reviewed, with a focus...
dCurrent address: Jefferson Lab. We present a dedicated analysis of the influence of excited states ...