NLO cross sections in 4 dimensions without DREG
arXiv:1609.02454 · doi:10.1088/1742-6596/761/1/012021
Abstract
In this review, we present a new method for computing physical cross sections at NLO accuracy in QCD without using the standard Dimensional Regularisation. The algorithm is based on the Loop-Tree Duality theorem, which allow us to obtain loop integrals as a sum of phase-space integrals; in this way, transforming loop integrals into phase-space integrals, we propose a method to merge virtual and real contributions in order to find observables at NLO in space-time dimensions. In addition, the strategy described is used for computing the process. A more detailed discussion related on this topic can be found in Ref [1].
4 pages. To be published in Journal of Physics Conference Series (IOP). Joint Proceedings of the XV Mexican Workshop on Particles and Fields & the XXX Annual Meeting of the Division of Particles and Fields of the Mexican Physical Society
References in corpus (5)
- An NNLO subtraction formalism in hadron collisions and its application to Higgs boson production at the LHC
- A novel subtraction scheme for double-real radiation at NNLO
- From loops to trees by-passing Feynman's theorem
- A Tree-Loop Duality Relation at Two Loops and Beyond
- On the singular behaviour of scattering amplitudes in quantum field theory