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arXiv:hep-th/0407215·v3·High Energy Physics — Theory

Holography of Radiation and Jet Quenching

Sang-Jin Sin (Hanyang)🇰🇷 · Ismail Zahed (SUSY at Stony Brook)🇺🇸

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Abstract

We study the non-linear propagation of radiation in {\cal N=4} SYM at zero and finite temperature using the refined radius/scale duality in AdS/CFT. We argue that a pulse radiation by a quark at the boundary should be described holographically by a "point like object" passing through the center of the AdS bulk. We find that at finite temperature, the radiation stalls at a distance of with a natural geometric and holographic interpretation. Indeed, the stalling is the holographic analogue of the gravitational in-fall of light towards the black hole in the bulk. We suggest that these results are relevant for jet quenching by a strongly coupled quark-gluon liquid as currently probed in heavy ion colliders at RHIC. In particular, colored jets cannot make it beyond 1/3 fm at RHIC whatever their energy.

Comments: 14 pages, 6 figures, change in section names

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