We present a unified formalism for the analysis of mesons. It is provided by a symmetry preserving Schwinger-Dyson-Bethe-Salpeter-Equation (SDBSE) treatment of a vector-vector contact interaction. The contact interaction (CI) model offers a simple-to-implement alternative to perform exploratory studies of QCD, within the SDBSE framework. Within the limitation of this model, we calculate the spectrum of D and B mesons. Our results are in agreement within 2% when compare with experimental data, lattice QCD and other SDBSE calculations involving sophisticated interaction kernels
We present a unified Dyson-Schwinger equation treatment of static and electromagnetic properties of ...
We study the low-energy scattering of charmed (D) and strange (K) mesons by nucleons. The short-dist...
If known, the spectrum of heavy-hadron molecules will be a key tool to disentangle the nature of the...
We present a unified formalism for the analysis of mesons. It is provided by a symmetry preserving S...
We present the first Dyson-Schwinger equation calculation of the light hadron spectrum that simultan...
We investigate the scattering of heavy-light K and D mesons by nucleons at low energies. The short-d...
We present the first Dyson-Schwinger equation calculation of the light hadron spectrum that simultan...
Abstract. We investigate the scattering of heavy-light K and D mesons by nucleons at low energies. T...
We calculate the coupling constants between the light vector mesons and heavy mesons within the fram...
A symmetry-preserving regularisation of a vector $$\times $$ vector contact interaction (SCI) is use...
We describe a calculation of the spectrum of strange and nonstrange hadrons that simultaneously corr...
Preliminary calculations using the Covariant Spectator Theory (CST) employed a scalar linear confini...
We present a unified Dyson-Schwinger equation treatment of static and electromagnetic properties of ...
Preliminary calculations using the Covariant Spectator Theory (CST) employed a scalar linear confini...
If known, the spectrum of heavy-hadron molecules will be a key tool to disentangle the nature of the...
We present a unified Dyson-Schwinger equation treatment of static and electromagnetic properties of ...
We study the low-energy scattering of charmed (D) and strange (K) mesons by nucleons. The short-dist...
If known, the spectrum of heavy-hadron molecules will be a key tool to disentangle the nature of the...
We present a unified formalism for the analysis of mesons. It is provided by a symmetry preserving S...
We present the first Dyson-Schwinger equation calculation of the light hadron spectrum that simultan...
We investigate the scattering of heavy-light K and D mesons by nucleons at low energies. The short-d...
We present the first Dyson-Schwinger equation calculation of the light hadron spectrum that simultan...
Abstract. We investigate the scattering of heavy-light K and D mesons by nucleons at low energies. T...
We calculate the coupling constants between the light vector mesons and heavy mesons within the fram...
A symmetry-preserving regularisation of a vector $$\times $$ vector contact interaction (SCI) is use...
We describe a calculation of the spectrum of strange and nonstrange hadrons that simultaneously corr...
Preliminary calculations using the Covariant Spectator Theory (CST) employed a scalar linear confini...
We present a unified Dyson-Schwinger equation treatment of static and electromagnetic properties of ...
Preliminary calculations using the Covariant Spectator Theory (CST) employed a scalar linear confini...
If known, the spectrum of heavy-hadron molecules will be a key tool to disentangle the nature of the...
We present a unified Dyson-Schwinger equation treatment of static and electromagnetic properties of ...
We study the low-energy scattering of charmed (D) and strange (K) mesons by nucleons. The short-dist...
If known, the spectrum of heavy-hadron molecules will be a key tool to disentangle the nature of the...