Drag force in strongly coupled, anisotropic plasma at finite chemical potential
arXiv:1410.7040 · doi:10.1007/JHEP12(2014)175
Abstract
We employ methods of gauge/string duality to analyze the drag force on a heavy quark moving through a strongly coupled, anisotropic \mathcal{N}=4, SU(N) super Yang- Mills plasma in the presence of a finite U(1) chemical potential. We present numerical results valid for any value of the anisotropy parameter and the U(1) charge density and arbitrary direction of the quark velocity with respect to the direction of anisotropy. In the small anisotropy limit we are also able to furnish analytical results.
24 pages, 16 eps figures
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Cited by in corpus (5)
- Holographic renormalization and anisotropic black branes in higher curvature gravity
- Jets in a strongly coupled anisotropic plasma
- Thermodynamics and energy loss in D dimensions from holographic QCD model
- Holographic study on the jet quenching parameter in anisotropic systems
- Holographic drag force in non-conformal plasma