Carrollian Origins of Bjorken Flow
arXiv:2302.03053 · doi:10.1103/PhysRevLett.130.241601
Abstract
Bjorken flow is among the simplest models of fluids moving near the speed of light () while Carroll symmetry arises as a contraction of Poincaré group when . We show that Bjorken flow and its phenomenological approximations are completely captured by Carrollian fluids. Carrollian symmetries arise on generic null surfaces and a fluid moving at is restricted to such a surface, thereby naturally inheriting the symmetries. Carrollian hydrodynamics is thus not exotic, but rather ubiquitous, and provides a concrete framework for fluids moving at or near the speed of light.
7 pages, 2 figures. v2: Minor presentation changes. Matches version published in PRL
References in corpus (7)
- Nonlinear Fluid Dynamics from Gravity
- The BMS/GCA correspondence
- Conformal Carroll groups and BMS symmetry
- Carroll versus Newton and Galilei: two dual non-Einsteinian concepts of time
- Flat Holography: Aspects of the dual field theory
- Entropy of three-dimensional asymptotically flat cosmological solutions
- Viscous plasma evolution from gravity using AdS/CFT