We discuss in general the construction of gauge-invariant non-local meson operators on the lattice. We use such operators to study the P- and D-wave mesons as well as hybrid mesons in quenched QCD, with quark masses near the strange quark mass. The resulting spectra are compared with experiment for the orbital excitations. For the states produced by gluonic excitations (hybrid mesons) we find evidence of mixing for non-exotic quantum numbers. We give predictions for masses of the spin-exotic hybrid mesons with J^{PC}=1^{-+},\ 0^{+-}, and 2^{+-}
One of the unanswered and most fundamental questions in physics regards the nature of the confinemen...
The hybrid quarkonium states are studied using the Born-Oppenheimer expansion. The first step in thi...
We compute from lattice QCD the ground and excited state masses of the charmed hybrid mesons ${\bar ...
We use lattice methods to evaluate from first principles the spectrum of hybrid mesons produced by g...
We present results for the hybrid meson spectrum produced by gluonic excitations in full QCD using W...
Since gluons in QCD are interacting fundamental constituents just as quarks are, we expect that in a...
I review the results from lattice gauge theory for the masses of exotic hybrid mesons
Since gluons in QCD are interacting fundamental constituents just as quarks are, we expect that in a...
Journal ArticleSince gluons in QCD are interacting fundamental constituents just as quarks are, we e...
We discuss the allowed decays of a hybrid meson in the heavy quark limit. We deduce that an importan...
ManuscriptHybrid mesons, made from a quark, an antiquark and gluons, can have quantum numbers inacce...
Hybrid mesons are exotic mesons in which the color field is not in its ground state. Their understan...
Hybrid mesons, made from a quark, an antiquark and gluons, can have quantum numbers inaccessible to ...
The status of lattice determinations of quarkonia and hybrid meson spectra is presented and compared...
Since gluons in QCD are interacting fundamental constituents just as quarks are, we expect that in a...
One of the unanswered and most fundamental questions in physics regards the nature of the confinemen...
The hybrid quarkonium states are studied using the Born-Oppenheimer expansion. The first step in thi...
We compute from lattice QCD the ground and excited state masses of the charmed hybrid mesons ${\bar ...
We use lattice methods to evaluate from first principles the spectrum of hybrid mesons produced by g...
We present results for the hybrid meson spectrum produced by gluonic excitations in full QCD using W...
Since gluons in QCD are interacting fundamental constituents just as quarks are, we expect that in a...
I review the results from lattice gauge theory for the masses of exotic hybrid mesons
Since gluons in QCD are interacting fundamental constituents just as quarks are, we expect that in a...
Journal ArticleSince gluons in QCD are interacting fundamental constituents just as quarks are, we e...
We discuss the allowed decays of a hybrid meson in the heavy quark limit. We deduce that an importan...
ManuscriptHybrid mesons, made from a quark, an antiquark and gluons, can have quantum numbers inacce...
Hybrid mesons are exotic mesons in which the color field is not in its ground state. Their understan...
Hybrid mesons, made from a quark, an antiquark and gluons, can have quantum numbers inaccessible to ...
The status of lattice determinations of quarkonia and hybrid meson spectra is presented and compared...
Since gluons in QCD are interacting fundamental constituents just as quarks are, we expect that in a...
One of the unanswered and most fundamental questions in physics regards the nature of the confinemen...
The hybrid quarkonium states are studied using the Born-Oppenheimer expansion. The first step in thi...
We compute from lattice QCD the ground and excited state masses of the charmed hybrid mesons ${\bar ...