AbstractWithin contemporary hadron physics there are two common methods for determining the momentum-dependence of the interaction between quarks: the top-down approach, which works toward an ab initio computation of the interaction via direct analysis of the gauge-sector gap equations; and the bottom-up scheme, which aims to infer the interaction by fitting data within a well-defined truncation of those equations in the matter sector that are relevant to bound-state properties. We unite these two approaches by demonstrating that the renormalisation-group-invariant running-interaction predicted by contemporary analyses of QCD's gauge sector coincides with that required in order to describe ground-state hadron observables using a nonperturba...
I review the the application of the lattice formulation of QCD and large-scale numerical simulations...
AbstractWe present a unified picture of mesons and baryons in the Dyson–Schwinger/Bethe–Salpeter app...
AbstractThe QCD running coupling αs(Q2) sets the strength of the interactions of quarks and gluons a...
Within contemporary hadron physics there are two common methods for determining the momentum-depend...
Within contemporary hadron physics there are two common methods for determining the momentum-depende...
Within contemporary hadron physics there are two common methods for determining the momentum-depende...
AbstractWithin contemporary hadron physics there are two common methods for determining the momentum...
Within contemporary hadron physics there are two common methods for determining the momentum-depende...
We show that the form of the renormalization group invariant quark-gluon interaction predicted by a ...
We show that the form of the renormalization group invariant quark-gluon interaction predicted by a ...
Nonperturbative techniques in quantum field theory, such as lattice gauge theory, Schwinger- Dyson e...
Nonperturbative techniques in quantum field theory, such as lattice gauge theory, Schwinger- Dyson e...
Dyson-Schwinger equations furnish a Poincare' covariant framework within which to study hadrons. A p...
We present a unified picture of mesons and baryons in the Dyson–Schwinger/Bethe–Salpeter approach, w...
We present a unified picture of mesons and baryons in the Dyson–Schwinger/Bethe–Salpeter approach, w...
I review the the application of the lattice formulation of QCD and large-scale numerical simulations...
AbstractWe present a unified picture of mesons and baryons in the Dyson–Schwinger/Bethe–Salpeter app...
AbstractThe QCD running coupling αs(Q2) sets the strength of the interactions of quarks and gluons a...
Within contemporary hadron physics there are two common methods for determining the momentum-depend...
Within contemporary hadron physics there are two common methods for determining the momentum-depende...
Within contemporary hadron physics there are two common methods for determining the momentum-depende...
AbstractWithin contemporary hadron physics there are two common methods for determining the momentum...
Within contemporary hadron physics there are two common methods for determining the momentum-depende...
We show that the form of the renormalization group invariant quark-gluon interaction predicted by a ...
We show that the form of the renormalization group invariant quark-gluon interaction predicted by a ...
Nonperturbative techniques in quantum field theory, such as lattice gauge theory, Schwinger- Dyson e...
Nonperturbative techniques in quantum field theory, such as lattice gauge theory, Schwinger- Dyson e...
Dyson-Schwinger equations furnish a Poincare' covariant framework within which to study hadrons. A p...
We present a unified picture of mesons and baryons in the Dyson–Schwinger/Bethe–Salpeter approach, w...
We present a unified picture of mesons and baryons in the Dyson–Schwinger/Bethe–Salpeter approach, w...
I review the the application of the lattice formulation of QCD and large-scale numerical simulations...
AbstractWe present a unified picture of mesons and baryons in the Dyson–Schwinger/Bethe–Salpeter app...
AbstractThe QCD running coupling αs(Q2) sets the strength of the interactions of quarks and gluons a...