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Infrared instability from nonlinear QCD evolution

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arxiv hep-ph/0510352 v2 pith:KDEV2VYN submitted 2005-10-26 hep-ph

Infrared instability from nonlinear QCD evolution

classification hep-ph
keywords infraredwaveequationevolutioninstabilitynonlinearordersolutions
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Using the Balitsky-Kovchegov (BK) equation as an explicit example, we show that nonlinear QCD evolution leads to an instability in the propagation toward the infrared of the gluon transverse momentum distribution, if one starts with a state with an infrared cut-off. This effect takes the mathematical form of rapidly moving traveling wave solutions of the BK equation, which we investigate by numerical simulations. These traveling wave solutions are different from those governing the transition to saturation, which propagate towards the ultraviolet. The infrared wave speed, formally infinite for the leading order QCD kernel, is determined by higher order corrections. This mechanism could play a role in the rapid decrease of the mean free path in the Color Glass Condensate scenario for heavy ion collisions.

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