We report on recent progress in the evaluation of next-to-leading order (NLO) observables using Lipatov's QCD high energy effective action. We calculate both real and virtual corrections to the quark induced forward jet vertex at NLO, making use of a new regularization method and a subtraction mechanism. As a new result we determine the real part of the NLO Mueller-Tang impact factor which is the only missing element for a complete NLO BFKL description of dijet events with a rapidity gap
We present the calculation of the forward jet vertex associated to a rapidity gap (coupling of a har...
4 pages, Proceedings of DIFFRACTION 2014 (Primo\v{s}ten, Croatia, September 2014)International audie...
We present the results for the calculation of the forward jet vertex associated to a rapidity gap (c...
We report on recent progress in the evaluation of next-to-leading order (NLO) observables using Lipa...
DOI: will be assigned We report on recent progress in the evaluation of next-to-leading order (NLO) ...
Abstract. We report on recent progress in the evaluation of next-to-leading order observables using ...
AbstractWe present the results for the calculation of the forward jet vertex associated to a rapidit...
We present the calculation of the forward jet vertex associated to a rapidity gap (coupling of a har...
We present the NLO corrections for the quark induced forward production of a jet with an associated ...
We present the NLO corrections for the quark induced forward production of a jet with an associated ...
We present the NLO corrections for the quark induced forward production of a jet with an associated ...
We present the results for the calculation of the forward jet vertex associated to a rapidity gap (c...
AbstractWe complete the computation of the Mueller–Tang jet impact factor at next-to-leading order (...
AbstractWe present the NLO corrections for the quark induced forward production of a jet with an ass...
We present the results for the calculation of the forward jet vertex associated to a rapidity gap (c...
We present the calculation of the forward jet vertex associated to a rapidity gap (coupling of a har...
4 pages, Proceedings of DIFFRACTION 2014 (Primo\v{s}ten, Croatia, September 2014)International audie...
We present the results for the calculation of the forward jet vertex associated to a rapidity gap (c...
We report on recent progress in the evaluation of next-to-leading order (NLO) observables using Lipa...
DOI: will be assigned We report on recent progress in the evaluation of next-to-leading order (NLO) ...
Abstract. We report on recent progress in the evaluation of next-to-leading order observables using ...
AbstractWe present the results for the calculation of the forward jet vertex associated to a rapidit...
We present the calculation of the forward jet vertex associated to a rapidity gap (coupling of a har...
We present the NLO corrections for the quark induced forward production of a jet with an associated ...
We present the NLO corrections for the quark induced forward production of a jet with an associated ...
We present the NLO corrections for the quark induced forward production of a jet with an associated ...
We present the results for the calculation of the forward jet vertex associated to a rapidity gap (c...
AbstractWe complete the computation of the Mueller–Tang jet impact factor at next-to-leading order (...
AbstractWe present the NLO corrections for the quark induced forward production of a jet with an ass...
We present the results for the calculation of the forward jet vertex associated to a rapidity gap (c...
We present the calculation of the forward jet vertex associated to a rapidity gap (coupling of a har...
4 pages, Proceedings of DIFFRACTION 2014 (Primo\v{s}ten, Croatia, September 2014)International audie...
We present the results for the calculation of the forward jet vertex associated to a rapidity gap (c...