We study the topological charge and the topological susceptibility in lattice QCD with two de-generate flavors of naive Wilson fermions at two values of lattice spacings and different volumes, for a range of quark masses. Configurations are generated with DDHMC/HMC algorithms and smoothened with HYP smearing. We present integrated autocorrelation time for both topologi-cal charge and topological susceptibility at the two lattice spacing values studied. The spanning of different topological sectors as a function of the hopping parameter κ is presented. The ex-pected chiral behaviour of the topological susceptibility (including finite volume dependence) is observed
We investigate how the topological charge density in lattice QCD simulations is affected by vio-lati...
In this paper, we show a comparison of different definitions of the topological charge on the lattic...
AbstractWe show that, if the formula for the topological charge density operator suggested by the us...
We investigate topology in lattice simulations of QCD with two flavors of dynamical Wilson fermions....
We address a long standing problem regarding topology in lattice simulations of QCD with unimproved ...
We present a study of the topological susceptibility in lattice QCD with two degenerate flavors of d...
We study the two-point Topological Charge Density Correlator (TCDC) in lattice QCD with two degenera...
AbstractWe measure the topological charge and its fluctuation for the gauge configurations generated...
We show that, if the formula for the topological charge density operator suggested by fermions obeyi...
We determine the topological susceptibility χt in the trivial topological sector generated by lattic...
Chiral perturbation theory predicts that in quantum chromodynamics (QCD), light dynamical quarks sup...
We compute the topological susceptibility Xt of 2+1-flavor lattice QCD with dynamical Möbius domain-...
We present a measurement of the topological susceptibility in two flavor QCD. In this observable, la...
ABSTRACT: We study the two-point Topological Charge Density Correlator (TCDC) in lattice QCD with tw...
ABSTRACT: We perform an extensive study of autocorrelation of several observables in lattice QCD wit...
We investigate how the topological charge density in lattice QCD simulations is affected by vio-lati...
In this paper, we show a comparison of different definitions of the topological charge on the lattic...
AbstractWe show that, if the formula for the topological charge density operator suggested by the us...
We investigate topology in lattice simulations of QCD with two flavors of dynamical Wilson fermions....
We address a long standing problem regarding topology in lattice simulations of QCD with unimproved ...
We present a study of the topological susceptibility in lattice QCD with two degenerate flavors of d...
We study the two-point Topological Charge Density Correlator (TCDC) in lattice QCD with two degenera...
AbstractWe measure the topological charge and its fluctuation for the gauge configurations generated...
We show that, if the formula for the topological charge density operator suggested by fermions obeyi...
We determine the topological susceptibility χt in the trivial topological sector generated by lattic...
Chiral perturbation theory predicts that in quantum chromodynamics (QCD), light dynamical quarks sup...
We compute the topological susceptibility Xt of 2+1-flavor lattice QCD with dynamical Möbius domain-...
We present a measurement of the topological susceptibility in two flavor QCD. In this observable, la...
ABSTRACT: We study the two-point Topological Charge Density Correlator (TCDC) in lattice QCD with tw...
ABSTRACT: We perform an extensive study of autocorrelation of several observables in lattice QCD wit...
We investigate how the topological charge density in lattice QCD simulations is affected by vio-lati...
In this paper, we show a comparison of different definitions of the topological charge on the lattic...
AbstractWe show that, if the formula for the topological charge density operator suggested by the us...