We present closed analytic expressions for the order alpha(s)(2) triangle diagram contributions to the matrix elements of the singlet and non-singlet axial vector currents between the vacuum and a quark-antiquark state. We have calculated these vertex functions for arbitrary momentum transfer and for four different sets of internal and external quark masses. We show that both the singlet and non-singlet vertex functions satisfy the correct chiral Ward identities. Using the exact expressions for the finite axial vector form factors, we check the quality and the convergence of expansions at production threshold and for asymptotic energies. (c) 2005 Elsevier B.V. All rights reserved
We present the results for heavy quark form factors at two-loop order in perturbative QCD for differ...
To learn more about the structure of hadrons we study form factors. In the semi-leptonic decay Ω- → ...
We evaluate the planar two-loop QCD diagrams contributing to the heavy-quark pair production process...
We present closed analytic expressions for the order $\alpha_s^2$ triangle diagram contributions to ...
We compute three-loop corrections to the singlet form factors for massive quarks using a semianalyti...
During the last year, analytic expressions for the two-loop QCD corrections to the form factors for ...
We consider Quantum Chromodynamics with external vector, axial-vector, scalar and pseudo-scalar curr...
Two-loop corrections for the correlator of the singlet axial and vector currents in QCD are calcula...
We compute the two-loop QCD corrections to the heavy quark form factors in case of the vector, axial...
We compute the two-loop QCD corrections to the heavy quark form factors in case of the vector, axial...
Two-loop corrections for the 〈VVA〉 correlator of the singlet axial and vector currents in QCD are ca...
We compute the two-loop corrections to the helicity amplitudes for the coupling of a massive vector ...
We review on the calculation of the heavy-quark photo-production vector form factors, with the full ...
A method to perform two-loop calculations in Eichten's effective field theory for heavy quarks is de...
We present an analytical calculation of the two-loop QCD corrections to the electromagnetic form fac...
We present the results for heavy quark form factors at two-loop order in perturbative QCD for differ...
To learn more about the structure of hadrons we study form factors. In the semi-leptonic decay Ω- → ...
We evaluate the planar two-loop QCD diagrams contributing to the heavy-quark pair production process...
We present closed analytic expressions for the order $\alpha_s^2$ triangle diagram contributions to ...
We compute three-loop corrections to the singlet form factors for massive quarks using a semianalyti...
During the last year, analytic expressions for the two-loop QCD corrections to the form factors for ...
We consider Quantum Chromodynamics with external vector, axial-vector, scalar and pseudo-scalar curr...
Two-loop corrections for the correlator of the singlet axial and vector currents in QCD are calcula...
We compute the two-loop QCD corrections to the heavy quark form factors in case of the vector, axial...
We compute the two-loop QCD corrections to the heavy quark form factors in case of the vector, axial...
Two-loop corrections for the 〈VVA〉 correlator of the singlet axial and vector currents in QCD are ca...
We compute the two-loop corrections to the helicity amplitudes for the coupling of a massive vector ...
We review on the calculation of the heavy-quark photo-production vector form factors, with the full ...
A method to perform two-loop calculations in Eichten's effective field theory for heavy quarks is de...
We present an analytical calculation of the two-loop QCD corrections to the electromagnetic form fac...
We present the results for heavy quark form factors at two-loop order in perturbative QCD for differ...
To learn more about the structure of hadrons we study form factors. In the semi-leptonic decay Ω- → ...
We evaluate the planar two-loop QCD diagrams contributing to the heavy-quark pair production process...