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most citedUnderstanding Geometric Scaling at Small x

4 citations · 4 across the 4 of their papers we have counts for

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hep-ph2005

From statistical physics to high energy QCD

Edmond Iancu

I discuss recent progress in understanding the high-energy evolution in QCD, which points towards a remarkable correspondence with the reaction-diffusion problem of statistical phy…

hep-ph2004

The QCD S-matrix in the high-energy limit

Edmond Iancu

I discuss elastic dipole-dipole scattering in QCD at high energies, with emphasis on the relation between Mueller's dipole picture and the Color Glass Condensate, and on the import…

hep-ph2003

Basics of the Color Glass Condensate

Edmond Iancu

I review basic concepts of the effective theory for the color glass condensate which describes the high-energy limit of QCD interactions.

hep-ph20024 cited

Understanding Geometric Scaling at Small x

E. Iancu, K. Itakura, L. McLerran

Geometric scaling is a novel scaling phenomenon observed in deep inelastic scattering at small x: the total virtual photon-proton cross section depends upon the two kinematical var…

hep-ph2002

The Colour Glass Condensate: An Introduction

Edmond Iancu, Andrei Leonidov, Larry McLerran

In these lectures, we develop the theory of the Colour Glass Condensate. This is the matter made of gluons in the high density environment characteristic of deep inelastic scatteri…

hep-ph2000

Small x, Saturation and the High Energy Limit of QCD

Edmond Iancu

The high energy limit of QCD is controlled by the small- part of a hadron wavefunction. We argue that this part is universal to all hadrons and is composed of a new form of matt…