AbstractA Padé approximation approach, rooted in an infrared moment technique, is employed to provide mass estimates for various glueball states in pure gauge theories. The main input in this analysis are theoretically well-motivated fits to lattice gluon propagator data, which are by now available for both SU(2) and SU(3) in 3 and 4 space–time dimensions. We construct appropriate gauge invariant and Lorentz covariant operators in the (pseudo)scalar and (pseudo)tensor sector. Our estimates compare reasonably well with a variety of lattice sources directly aimed at extracting glueball masses
Over the last years, lattice calculations in pure Yang-Mills gauge theory seem to have come more or ...
We study whether the pseudoscalar glueball mass in full QCD can differ from the prediction of quench...
We present a study of the SU(3) glueball spectrum for all JPC values at lattice spacings down to a−1...
AbstractA Padé approximation approach, rooted in an infrared moment technique, is employed to provid...
A Padé approximation approach, rooted in an infrared moment technique, is employed to provide mass e...
We set up an infrared-based moment problem to obtain estimates of the masses of the scalar, pseudosc...
We present an error reduction method for obtaining glueball correlators from Monte Carlo simulations...
AbstractWe present an error reduction method for obtaining glueball correlators from Monte Carlo sim...
The spectrum of glueballs below 4 GeV in the SU(3) pure-gauge theory is investigated using Monte Car...
We address a study of glueball masses in the confining regime of SU(2) in D = 3 using an algo-rithm ...
Glueball spectrum is studied using an improved gluonic action on asymmetric lattices in the pure SU(...
We review the recent glueball mass calculations using an efficient method for solving the Schrödinge...
We calculate the spectrum of glueball masses in non-supersymmetric Yang-Mills theory in three and fo...
We report the masses of the lightest spin-0 and spin-2 glueballs obtained in an extensive lattice st...
We discuss how to extract the spectroscopy of quantum chromodynamics (QCD) in the pure gauge sector ...
Over the last years, lattice calculations in pure Yang-Mills gauge theory seem to have come more or ...
We study whether the pseudoscalar glueball mass in full QCD can differ from the prediction of quench...
We present a study of the SU(3) glueball spectrum for all JPC values at lattice spacings down to a−1...
AbstractA Padé approximation approach, rooted in an infrared moment technique, is employed to provid...
A Padé approximation approach, rooted in an infrared moment technique, is employed to provide mass e...
We set up an infrared-based moment problem to obtain estimates of the masses of the scalar, pseudosc...
We present an error reduction method for obtaining glueball correlators from Monte Carlo simulations...
AbstractWe present an error reduction method for obtaining glueball correlators from Monte Carlo sim...
The spectrum of glueballs below 4 GeV in the SU(3) pure-gauge theory is investigated using Monte Car...
We address a study of glueball masses in the confining regime of SU(2) in D = 3 using an algo-rithm ...
Glueball spectrum is studied using an improved gluonic action on asymmetric lattices in the pure SU(...
We review the recent glueball mass calculations using an efficient method for solving the Schrödinge...
We calculate the spectrum of glueball masses in non-supersymmetric Yang-Mills theory in three and fo...
We report the masses of the lightest spin-0 and spin-2 glueballs obtained in an extensive lattice st...
We discuss how to extract the spectroscopy of quantum chromodynamics (QCD) in the pure gauge sector ...
Over the last years, lattice calculations in pure Yang-Mills gauge theory seem to have come more or ...
We study whether the pseudoscalar glueball mass in full QCD can differ from the prediction of quench...
We present a study of the SU(3) glueball spectrum for all JPC values at lattice spacings down to a−1...