The Feynman-Hellmann theorem can be derived from the long Euclidean-time limit of correlation functions determined with functional derivatives of the partition function. Using this insight, we fully develop an improved method for computing matrix elements of external currents utilizing only two-point correlation functions. Our method applies to matrix elements of any external bilinear current, including nonzero momentum transfer, flavor-changing, and two or more current insertion matrix elements. The ability to identify and control all the systematic uncertainties in the analysis of the correlation functions stems from the unique time dependence of the ground-state matrix elements and the fact that all excited states and contact terms are E...
The standard method for determining matrix elements in lattice QCD requires the computation of three...
Baryons such as the proton and neutron make up the large majority of all visible matter in the unive...
We perform a ${N}_{f}=2+1$ lattice QCD simulation to determine the quark spin fractions of hadrons u...
The Feynman-Hellmann theorem can be derived from the long Euclidean-time limit of correlation functi...
The Feynman-Hellmann theorem can be derived from the long Euclidean-time limit of correlation functi...
The Feynman-Hellmann theorem can be derived from the long Euclidean-time limit of correlation functi...
The Feynman-Hellmann theorem can be derived from the long Euclidean-time limit of correlation functi...
The Feynman-Hellmann approach to computing matrix elements in lattice QCD by first adding a perturbi...
The Feynman-Hellmann approach to computing matrix elements in lattice QCD by first adding a perturbi...
The Feynman-Hellmann (FH) relation offers an alternative way of accessing hadronic matrix elements t...
The Feynman-Hellmann (FH) relation offers an alternative way of accessing hadronic matrix elements t...
Quark line disconnected matrix elements of an operator, such as the axial current, are difficult to ...
Quark line disconnected matrix elements of an operator, such as the axial current, are difficult to ...
Quark line disconnected matrix elements of an operator, such as the axial current, are difficult to ...
Quark line disconnected matrix elements of an operator, such as the axial current, are difficult to ...
The standard method for determining matrix elements in lattice QCD requires the computation of three...
Baryons such as the proton and neutron make up the large majority of all visible matter in the unive...
We perform a ${N}_{f}=2+1$ lattice QCD simulation to determine the quark spin fractions of hadrons u...
The Feynman-Hellmann theorem can be derived from the long Euclidean-time limit of correlation functi...
The Feynman-Hellmann theorem can be derived from the long Euclidean-time limit of correlation functi...
The Feynman-Hellmann theorem can be derived from the long Euclidean-time limit of correlation functi...
The Feynman-Hellmann theorem can be derived from the long Euclidean-time limit of correlation functi...
The Feynman-Hellmann approach to computing matrix elements in lattice QCD by first adding a perturbi...
The Feynman-Hellmann approach to computing matrix elements in lattice QCD by first adding a perturbi...
The Feynman-Hellmann (FH) relation offers an alternative way of accessing hadronic matrix elements t...
The Feynman-Hellmann (FH) relation offers an alternative way of accessing hadronic matrix elements t...
Quark line disconnected matrix elements of an operator, such as the axial current, are difficult to ...
Quark line disconnected matrix elements of an operator, such as the axial current, are difficult to ...
Quark line disconnected matrix elements of an operator, such as the axial current, are difficult to ...
Quark line disconnected matrix elements of an operator, such as the axial current, are difficult to ...
The standard method for determining matrix elements in lattice QCD requires the computation of three...
Baryons such as the proton and neutron make up the large majority of all visible matter in the unive...
We perform a ${N}_{f}=2+1$ lattice QCD simulation to determine the quark spin fractions of hadrons u...