activity
20072015
most citedNucleon mass and sigma term from lattice QCD with two light fermion flavors

116 citations · 199 across the 9 of their papers we have counts for

collaborators

36 papers

hep-lat2015★ 7 cited

Curvature of the critical line on the plane of quark chemical potential and pseudo scalar meson mass for three-flavor QCD

Xiao-Yong Jin, Yoshinobu Kuramashi, Yoshifumi Nakamura +2

We investigate the phase structure of three-flavor QCD in the presence of finite quark chemical potential by using the non-perturbatively improved Wilson fe…

hep-lat2015

Scalar correlators near the 3-flavor thermal critical point

Xiao-Yong Jin, Yoshinobu Kuramashi, Yoshifumi Nakamura +2

We investigate screening masses at both sides of the first order finite temperature transition with 3 quark flavors using the nonperturbatively improved clover fermion action and t…

hep-lat2014

Connected and disconnected quark contributions to hadron spin

A. J. Chambers, R. Horsley, Y. Nakamura +8

By introducing an external spin operator to the fermion action, the quark spin fractions of hadrons are determined from the linear response of the hadron energies using the Feynman…

hep-lat2014

Determining Sigma - Lambda mixing

R. Horsley, J. Najjar, Y. Nakamura +7

SU2 isospin breaking effects in baryon octet (and decuplet) masses are due to a combination of up and down quark mass differences and electromagnetic effects. These mass difference…

hep-lat2014★ 45 cited

Critical endpoint of finite temperature phase transition for three flavor QCD

Xiao-Yong Jin, Yoshinobu Kuramashi, Yoshifumi Nakamura +2

We investigate the critical endpoint of finite temperature phase transition of QCD at zero chemical potential. We employ the renormalization-group improved Iwasaki gauge ac…

hep-lat2014

Critical end point of Nf=3 QCD at finite temperature and density

Shinji Takeda, Xiao-Yong Jin, Yoshinobu Kuramashi +2

We investigate the phase structure of 3-flavor QCD in the presence of finite quark chemical potential by using the Wilson-Clover fermion action. Especially, we focus on lo…