activity
20062009
most citedHorizon formation and far-from-equilibrium isotropization in supersymmetric Yang-Mills plasma

426 citations · 950 across the 7 of their papers we have counts for

collaborators

7 papers

hep-ph200921 cited

On the dispersion of fundamental particles in QCD and N=4 Super Yang-Mills theory

P. M. Chesler, A. Gynther, A. Vuorinen

We study thermal corrections to the dispersion relations of massive fundamental particles immersed in weakly coupled non-Abelian plasmas. The cases covered include quarks in the QC…

hep-th2008426 cited

Horizon formation and far-from-equilibrium isotropization in supersymmetric Yang-Mills plasma

Paul M. Chesler, Laurence G. Yaffe

Using gauge/gravity duality, we study the creation and evolution of anisotropic, homogeneous strongly coupled supersymmetric Yang-Mills plasma. In the dual gravitati…

hep-th2008153 cited

Light quark energy loss in strongly-coupled N = 4 supersymmetric Yang-Mills plasma

Paul M. Chesler, Kristan Jensen, Andreas Karch +1

We compute the penetration depth of a light quark moving through a large , strongly coupled supersymmetric Yang-Mills plasma using gauge/gravity duality and a…

hep-th200884 cited

Jets in strongly-coupled N = 4 super Yang-Mills theory

Paul M. Chesler, Kristan Jensen, Andreas Karch

We study jets of massless particles in N=4 super Yang-Mills using the AdS/CFT correspondence both at zero and finite temperature. We set up an initial state corresponding to a high…

hep-th2007115 cited

The stress-energy tensor of a quark moving through a strongly-coupled N=4 supersymmetric Yang-Mills plasma: comparing hydrodynamics and AdS/CFT

Paul M. Chesler, Laurence G. Yaffe

The stress-energy tensor of a quark moving through a strongly coupled N=4 supersymmetric Yang-Mills plasma is evaluated using gauge/string duality. The accuracy with which the resu…

hep-th2007119 cited

The wake of a quark moving through a strongly-coupled supersymmetric Yang-Mills plasma

Laurence G. Yaffe, Paul M. Chesler

The energy density wake produced by a heavy quark moving through a strongly coupled N=4 supersymmetric Yang-Mills plasma is computed using gauge/string duality.