Author:
Chesler Paul M.,Lekaveckas Mindaugas,Rajagopal Krishna
Abstract
Abstract
We compute and study the drag force acting on a heavy quark propagating through the matter produced in the collision of two sheets of energy in a strongly coupled gauge theory that can be analyzed holographically. Although this matter is initially far from equilibrium, we find that the equilibrium expression for heavy quark energy loss in a homogeneous strongly coupled plasma with the same instantaneous energy density or pressure as that at the location of the quark describes many qualitative features of our results. One interesting exception is that there is a time delay after the initial collision before the heavy quark energy loss becomes significant. At later times, once a liquid plasma described by viscous hydrodynamics has formed, expressions based upon assuming instantaneous homogeneity and equilibrium provide a semi-quantitative description of our results — as long as the rapidity of the heavy quark is not too large. For a heavy quark with large rapidity, the gradients in the velocity of the hydrodynamic fluid result in qualitative consequences for the ‘drag’ force acting on the quark. In certain circumstances, the force required to drag the quark through the plasma can point opposite to the velocity of the quark, meaning that the force that the plasma exerts on a quark moving through it acts in the same direction as its velocity. And, generically, the force includes a component perpendicular to the direction of motion of the quark. Our results support a straightforward approach to modeling the drag on, and energy loss of, heavy quarks with modest rapidity in heavy ion collisions, both before and after the quark-gluon plasma hydrodynamizes, and provide cautionary lessons at higher rapidity.
Publisher
Springer Science and Business Media LLC
Subject
Nuclear and High Energy Physics
Reference42 articles.
1. C. Herzog, A. Karch, P. Kovtun, C. Kozcaz and L. Yaffe, Energy loss of a heavy quark moving through N = 4 supersymmetric Yang-Mills plasma, JHEP
07 (2006) 013 [hep-th/0605158] [INSPIRE].
2. S.S. Gubser, Drag force in AdS/CFT, Phys. Rev.
D 74 (2006) 126005 [hep-th/0605182] [INSPIRE].
3. J. Casalderrey-Solana and D. Teaney, Heavy quark diffusion in strongly coupled N = 4 Yang-Mills, Phys. Rev.
D 74 (2006) 085012 [hep-ph/0605199] [INSPIRE].
4. J.M. Maldacena, The Large-N limit of superconformal field theories and supergravity, Adv. Theor. Math. Phys.
2 (1998) 231 [Int. J. Theor. Phys.
38 (1999) 1113] [hep-th/9711200] [INSPIRE].
5. E. Witten, Anti-de Sitter space and holography, Adv. Theor. Math. Phys.
2 (1998) 253 [hep-th/9802150] [INSPIRE].
Cited by
32 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献