Energy Loss of Heavy Quarks from Asymptotically AdS Geometries
arXiv:hep-th/0605191 · doi:10.1088/1126-6708/2006/09/032
Abstract
We investigate some universal features of AdS/CFT models of heavy quark energy loss. In addition, as a specific example, we examine quark damping in the spinning D3-brane solution dual to N=4 SU(N_c) super Yang-Mills at finite temperature and R-charge chemical potential.
17 pages, 9 figures; v2 refs added, typo fixed
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- Drag Force in a Charged N=4 SYM Plasma
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- Deep inelastic scattering off a N=4 SYM plasma at strong coupling
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- Screening length in plasma winds
- Drag Force, Jet Quenching, and AdS/QCD
- Holography and Unquenched Quark-Gluon Plasmas
- On the velocity and chemical-potential dependence of the heavy-quark interaction in N=4 SYM plasmas
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- Criticality, Scaling and Chiral Symmetry Breaking in External Magnetic Field
- Drag Force of Moving Quark in STU Background
- Non-relativistic CFT and Semi-classical Strings
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- Enhancing the Jet Quenching Parameter from Marginal Deformations
- Heavy flavor diffusion in weakly coupled N=4 Super Yang-Mills theory
- Universality of the diffusion wake in the gauge-string duality
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- Baryon Dissociation in a Strongly Coupled Plasma
- Notes on Properties of Holographic Strange Metals
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- Radiation from an accelerated quark via AdS/CFT
- Wake of color fields in charged SYM plasmas
- Friction Coefficient for Quarks in Supergravity Duals
- Aspects of the Holographic Study of Flavor Dynamics
- Strongly Coupled Heavy and Light Quark Thermal Motion from AdS/CFT
- The Static Heavy Quark-Antiquark Potential within String Theory in Arbitrary Stationary Backgrounds
- Patchwork Conditions for Holographic Nonlinear Responses: A Computational Method for Electric Conductivity and Friction Coefficient