We compute the polarized splitting functions in the triple collinear limit at next-to-leading order accuracy (NLO) in the strong coupling alpha(S), for the splitting processes gamma -> qq gamma, gamma -> qqg and g -> qq gamma. The divergent structure of each splitting function was compared to the predicted behaviour according to Catani's formula. The results obtained in this paper are compatible with the unpolarized splitting functions computed in a previous article. Explicit results for NLO corrections are presented in the context of conventional dimensional regularization (CDR)
We compute the next-to-leading order (NLO) QCD corrections to the 1 -> 2 splitting amplitudes in dif...
AbstractWe present the next-to-next-to-leading order (NNLO) contributions to the main splitting func...
AbstractBuilding on earlier work, the dipole subtraction formalism for photonic corrections is exten...
We compute the polarized splitting functions in the triple collinear limit at next-to-leading order ...
AbstractIn this article, we study the triple-collinear limit of scattering amplitudes, focusing the ...
We present splitting functions in the triple collinear limit at next-to-leading order. The computati...
We present splitting functions in the triple collinear limit at next-to-leading order. The computati...
Abstract: We present splitting functions in the triple collinear limit at next-to-leading order. The...
We consider the singular behaviour of tree-level QCD amplitudes when the momenta of three partons be...
We study the factorisation properties of one-loop scattering amplitudes in the triple collinear limi...
We study the factorisation properties of one-loop scattering amplitudes in the triple collinear limi...
We study the factorisation properties of one-loop scattering amplitudes in the triple collinear limi...
In the kinematic region where three particles i, j, k are collinear, the multi-parton scattering amp...
AbstractBuilding on earlier work, the dipole subtraction formalism for photonic corrections is exten...
We compute the next-to-leading order (NLO) QCD corrections to the 1 -> 2 splitting amplitudes in dif...
We compute the next-to-leading order (NLO) QCD corrections to the 1 -> 2 splitting amplitudes in dif...
AbstractWe present the next-to-next-to-leading order (NNLO) contributions to the main splitting func...
AbstractBuilding on earlier work, the dipole subtraction formalism for photonic corrections is exten...
We compute the polarized splitting functions in the triple collinear limit at next-to-leading order ...
AbstractIn this article, we study the triple-collinear limit of scattering amplitudes, focusing the ...
We present splitting functions in the triple collinear limit at next-to-leading order. The computati...
We present splitting functions in the triple collinear limit at next-to-leading order. The computati...
Abstract: We present splitting functions in the triple collinear limit at next-to-leading order. The...
We consider the singular behaviour of tree-level QCD amplitudes when the momenta of three partons be...
We study the factorisation properties of one-loop scattering amplitudes in the triple collinear limi...
We study the factorisation properties of one-loop scattering amplitudes in the triple collinear limi...
We study the factorisation properties of one-loop scattering amplitudes in the triple collinear limi...
In the kinematic region where three particles i, j, k are collinear, the multi-parton scattering amp...
AbstractBuilding on earlier work, the dipole subtraction formalism for photonic corrections is exten...
We compute the next-to-leading order (NLO) QCD corrections to the 1 -> 2 splitting amplitudes in dif...
We compute the next-to-leading order (NLO) QCD corrections to the 1 -> 2 splitting amplitudes in dif...
AbstractWe present the next-to-next-to-leading order (NNLO) contributions to the main splitting func...
AbstractBuilding on earlier work, the dipole subtraction formalism for photonic corrections is exten...