The baryon axial vector current is computed at one-loop order in heavy baryon chiral perturbation theory in the large-N_c limit, where N_c is the number of colors. Loop graphs with octet and decuplet intermediate states cancel to various orders in N_c as a consequence of the large-N_c spin-flavor symmetry of QCD baryons. These cancellations are explicitly shown for the general case of N_f flavors of light quarks. In particular, a new generic cancellation is identified in the renormalization of the baryon axial vector current at one-loop order. A comparison with conventional heavy baryon chiral perturbation theory is performed at the physical values N_c=3, N_f=3
We calculate one-loop correction to the axial charges of the octet baryons using quenched chiral per...
We examined strong interactions in the low-energy regime in terms of two complementary non-perturbat...
We examined strong interactions in the low-energy regime in terms of two complementary non-perturbat...
The chiral Lagrangian for baryons is formulated in an expansion in 1/N_c. The chiral Lagrangian impl...
We study the effects of the decuplet-octet mass difference for the baryon axial vector current at on...
We study the effects of the decuplet-octet mass difference for the baryon axial vector current at on...
We compute the chiral corrections to octet baryon axial vector currents through O(p3) in heavy baryo...
We compute the chiral corrections to octet baryon axial vector currents through O(p3) in heavy baryo...
We analyse the baryon mass spectrum in a framework which combines the 1/Nc expansion with chiral per...
We consider flavor breaking in the the octet and decuplet baryon masses at second order in large-N c...
The construction of the effective Lagrangian relevant for the mesonic sector of QCD in the large N_c...
In this contribution, baryon axial-vector couplings are studied in the framework of the combined 1/N...
This talk comments the main features of a hadronic description of QCD in the limit of large number o...
In this contribution, baryon axial-vector couplings are studied in the framework of the combined 1/N...
Tree amplitudes for baryon-pion scattering are studied in the 1/N_c expansion. Generalized large-N_c...
We calculate one-loop correction to the axial charges of the octet baryons using quenched chiral per...
We examined strong interactions in the low-energy regime in terms of two complementary non-perturbat...
We examined strong interactions in the low-energy regime in terms of two complementary non-perturbat...
The chiral Lagrangian for baryons is formulated in an expansion in 1/N_c. The chiral Lagrangian impl...
We study the effects of the decuplet-octet mass difference for the baryon axial vector current at on...
We study the effects of the decuplet-octet mass difference for the baryon axial vector current at on...
We compute the chiral corrections to octet baryon axial vector currents through O(p3) in heavy baryo...
We compute the chiral corrections to octet baryon axial vector currents through O(p3) in heavy baryo...
We analyse the baryon mass spectrum in a framework which combines the 1/Nc expansion with chiral per...
We consider flavor breaking in the the octet and decuplet baryon masses at second order in large-N c...
The construction of the effective Lagrangian relevant for the mesonic sector of QCD in the large N_c...
In this contribution, baryon axial-vector couplings are studied in the framework of the combined 1/N...
This talk comments the main features of a hadronic description of QCD in the limit of large number o...
In this contribution, baryon axial-vector couplings are studied in the framework of the combined 1/N...
Tree amplitudes for baryon-pion scattering are studied in the 1/N_c expansion. Generalized large-N_c...
We calculate one-loop correction to the axial charges of the octet baryons using quenched chiral per...
We examined strong interactions in the low-energy regime in terms of two complementary non-perturbat...
We examined strong interactions in the low-energy regime in terms of two complementary non-perturbat...