We explain how one-loop amplitudes with massive fermions can be computed using only on-shell information. We first use the spinor-helicity formalism in six dimensions to perform generalised unitarity cuts in d dimensions. We then show that divergent wave-function cuts can be avoided, and the remaining ambiguities in the renormalised amplitudes can be fixed, by matching to universal infrared poles in 4 − 2ϵ dimensions and ultraviolet poles in 6 − 2ϵ dimensions. In the latter case we construct an effective Lagrangian in six dimensions and reduce the additional constraint to an on-shell tree-level computation
We present the universal one-loop effective action up to dimension eight after integrating out heavy...
The purely on-shell approach to effective field theories requires the construction of independent co...
We present formulas for the coefficients of 2-, 3-, 4- and 5-point master integrals for one-loop mas...
The large amount of new high energy data being collected by the LHC experiments has the potential t...
AbstractWe extend the generalized D-dimensional unitarity method for numerical evaluation of one-loo...
We present compact analytic formulae for the one-loop amplitudes for Higgs + 4 parton scattering, 0...
We derive general tree-level recursion relations for amplitudes which include massive propagating pa...
AbstractFollowing the previous paper arXiv:1205.4827, we formulate an S-matrix functional for massiv...
We present a method for the direct extraction of rational contributions to one-loop scattering ampli...
We calculate a set of one-loop corrections to h → bb¯¯bb¯ and h → ττ¯¯¯ττ¯ decays in the dimensi...
We present the application of a novel reduction technique for one-loop scattering amplitudes based o...
We compute the integrand of the full-colour, two-loop, five-gluon scattering amplitude in pure Yang-...
We consider a Higgs boson coupled to gluons via the five-dimensional effective operator H tr G_{\mu\...
We consider a Higgs boson coupled to gluons via the five-dimensional effective operator H tr G_{\mu\...
We consider a Higgs boson coupled to gluons via the five-dimensional effective operator H tr G_{\mu\...
We present the universal one-loop effective action up to dimension eight after integrating out heavy...
The purely on-shell approach to effective field theories requires the construction of independent co...
We present formulas for the coefficients of 2-, 3-, 4- and 5-point master integrals for one-loop mas...
The large amount of new high energy data being collected by the LHC experiments has the potential t...
AbstractWe extend the generalized D-dimensional unitarity method for numerical evaluation of one-loo...
We present compact analytic formulae for the one-loop amplitudes for Higgs + 4 parton scattering, 0...
We derive general tree-level recursion relations for amplitudes which include massive propagating pa...
AbstractFollowing the previous paper arXiv:1205.4827, we formulate an S-matrix functional for massiv...
We present a method for the direct extraction of rational contributions to one-loop scattering ampli...
We calculate a set of one-loop corrections to h → bb¯¯bb¯ and h → ττ¯¯¯ττ¯ decays in the dimensi...
We present the application of a novel reduction technique for one-loop scattering amplitudes based o...
We compute the integrand of the full-colour, two-loop, five-gluon scattering amplitude in pure Yang-...
We consider a Higgs boson coupled to gluons via the five-dimensional effective operator H tr G_{\mu\...
We consider a Higgs boson coupled to gluons via the five-dimensional effective operator H tr G_{\mu\...
We consider a Higgs boson coupled to gluons via the five-dimensional effective operator H tr G_{\mu\...
We present the universal one-loop effective action up to dimension eight after integrating out heavy...
The purely on-shell approach to effective field theories requires the construction of independent co...
We present formulas for the coefficients of 2-, 3-, 4- and 5-point master integrals for one-loop mas...