AbstractWe complete the computation of the Mueller–Tang jet impact factor at next-to-leading order (NLO) initiated in [1] and presented in [2] by computing the real corrections associated with gluons in the initial state making use of Lipatov's effective action. NLO corrections for this effective vertex are an important ingredient for a reliable description of large rapidity gap phenomenology within the BFKL approach
We present the results for the calculation of the forward jet vertex associated to a rapidity gap (c...
AbstractWe present the results for the calculation of the forward jet vertex associated to a rapidit...
The production of forward jets separated by a large rapidity gap at LHC, the so-called Mueller–Navel...
32 pages, many figuresInternational audienceWe complete the computation of the Mueller-Tang jet impa...
32 pages, many figuresInternational audienceWe complete the computation of the Mueller-Tang jet impa...
AbstractWe complete the computation of the Mueller–Tang jet impact factor at next-to-leading order (...
We complete the computation of the Mueller-Tang jet impact factor at next-to-leading order (NLO) ini...
We complete the computation of the Mueller-Tang jet impact factor at next-to-leading order (NLO) ini...
We complete the computation of the Mueller-Tang jet impact factor at next-to-leading order (NLO) ini...
AbstractWe present the NLO corrections for the quark induced forward production of a jet with an ass...
We present the NLO corrections for the quark induced forward production of a jet with an associated ...
4 pages, Proceedings of DIFFRACTION 2014 (Primo\v{s}ten, Croatia, September 2014)International audie...
4 pages, Proceedings of DIFFRACTION 2014 (Primo\v{s}ten, Croatia, September 2014)International audie...
We present the calculation of the forward jet vertex associated to a rapidity gap (coupling of a har...
We present the results for the calculation of the forward jet vertex associated to a rapidity gap (c...
We present the results for the calculation of the forward jet vertex associated to a rapidity gap (c...
AbstractWe present the results for the calculation of the forward jet vertex associated to a rapidit...
The production of forward jets separated by a large rapidity gap at LHC, the so-called Mueller–Navel...
32 pages, many figuresInternational audienceWe complete the computation of the Mueller-Tang jet impa...
32 pages, many figuresInternational audienceWe complete the computation of the Mueller-Tang jet impa...
AbstractWe complete the computation of the Mueller–Tang jet impact factor at next-to-leading order (...
We complete the computation of the Mueller-Tang jet impact factor at next-to-leading order (NLO) ini...
We complete the computation of the Mueller-Tang jet impact factor at next-to-leading order (NLO) ini...
We complete the computation of the Mueller-Tang jet impact factor at next-to-leading order (NLO) ini...
AbstractWe present the NLO corrections for the quark induced forward production of a jet with an ass...
We present the NLO corrections for the quark induced forward production of a jet with an associated ...
4 pages, Proceedings of DIFFRACTION 2014 (Primo\v{s}ten, Croatia, September 2014)International audie...
4 pages, Proceedings of DIFFRACTION 2014 (Primo\v{s}ten, Croatia, September 2014)International audie...
We present the calculation of the forward jet vertex associated to a rapidity gap (coupling of a har...
We present the results for the calculation of the forward jet vertex associated to a rapidity gap (c...
We present the results for the calculation of the forward jet vertex associated to a rapidity gap (c...
AbstractWe present the results for the calculation of the forward jet vertex associated to a rapidit...
The production of forward jets separated by a large rapidity gap at LHC, the so-called Mueller–Navel...