4.8 Article

Causality of the Einstein-Israel-Stewart Theory with Bulk Viscosity

Journal

PHYSICAL REVIEW LETTERS
Volume 122, Issue 22, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.122.221602

Keywords

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Funding

  1. Sloan Research Fellowship - Alfred P. Sloan foundation
  2. NSF [DMS-1812826]
  3. CNPq [306795/2017-5]
  4. FAPESP [2017/05685-2]

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We prove that Einstein's equations coupled to equations of the Israel-Stewart-type, describing the dynamics of a relativistic fluid with bulk viscosity and nonzero baryon charge (without shear viscosity or baryon diffusion) dynamically coupled to gravity, are causal in the full nonlinear regime. We also show that these equations can be written as a fast-order symmetric hyperbolic system, implying local existence and uniqueness of solutions to the equations of motion. We use an arbitrary equation of state and do not make any simplifying symmetry or near-equilibrium assumption, requiring only physically natural conditions on the fields. These results pave the way for the inclusion of bulk viscosity effects in simulations of gravitational-wave signals coming from neutron star mergers.

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