Quark line disconnected matrix elements of an operator, such as the axial current, are difficult to compute on the lattice. The standard method uses a stochastic estimator of the operator, which is generally very noisy. We discuss and develop further our alternative approach using the Feynman-Hellmann theorem which involves only evaluating two-point correlation functions. This is applied to computing the contribution of the quark spin to the nucleon and in particular for the strange quark. In this process we also pay particular attention to the development of an SU(3) flavour breaking expansion for singlet operators
We determine the quark contributions to the nucleon spin Δs, Δu and Δd as well as their contribution...
The Feynman-Hellmann theorem can be derived from the long Euclidean-time limit of correlation functi...
We determine the quark contributions to the nucleon spin Delta s, Delta u and Ad as well as their co...
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 spin decomposition of the proton is a long-standing topic of much interest in hadronic physics. ...
The spin decomposition of the proton is a long-standing topic of much interest in hadronic physics. ...
The spin decomposition of the proton is a long-standing topic of much interest in hadronic physics. ...
The spin decomposition of the proton is a long-standing topic of much interest in hadronic physics. ...
The spin decomposition of the proton is a long-standing topic of much interest in hadronic physics. ...
The spin decomposition of the proton is a long-standing topic of much interest in hadronic physics. ...
By introducing an external spin operator to the fermion action, the quark spin fractions of hadrons ...
We perform a ${N}_{f}=2+1$ lattice QCD simulation to determine the quark spin fractions of hadrons u...
We perform a ${N}_{f}=2+1$ lattice QCD simulation to determine the quark spin fractions of hadrons u...
We determine the quark contributions to the nucleon spin Δs, Δu and Δd as well as their contribution...
The Feynman-Hellmann theorem can be derived from the long Euclidean-time limit of correlation functi...
We determine the quark contributions to the nucleon spin Delta s, Delta u and Ad as well as their co...
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 spin decomposition of the proton is a long-standing topic of much interest in hadronic physics. ...
The spin decomposition of the proton is a long-standing topic of much interest in hadronic physics. ...
The spin decomposition of the proton is a long-standing topic of much interest in hadronic physics. ...
The spin decomposition of the proton is a long-standing topic of much interest in hadronic physics. ...
The spin decomposition of the proton is a long-standing topic of much interest in hadronic physics. ...
The spin decomposition of the proton is a long-standing topic of much interest in hadronic physics. ...
By introducing an external spin operator to the fermion action, the quark spin fractions of hadrons ...
We perform a ${N}_{f}=2+1$ lattice QCD simulation to determine the quark spin fractions of hadrons u...
We perform a ${N}_{f}=2+1$ lattice QCD simulation to determine the quark spin fractions of hadrons u...
We determine the quark contributions to the nucleon spin Δs, Δu and Δd as well as their contribution...
The Feynman-Hellmann theorem can be derived from the long Euclidean-time limit of correlation functi...
We determine the quark contributions to the nucleon spin Delta s, Delta u and Ad as well as their co...