Fixing extensions to General Relativity in the non-linear regime
arXiv:1706.07421 · doi:10.1103/PhysRevD.96.084043
Abstract
The question of what gravitational theory could supersede General Relativity has been central in theoretical physics for decades. Many disparate alternatives have been proposed motivated by cosmology, quantum gravity and phenomenological angles, and have been subjected to tests derived from cosmological, solar system and pulsar observations typically restricted to linearized regimes. Gravitational waves from compact binaries provide new opportunities to probe these theories in the strongly gravitating/highly dynamical regimes. To this end however, a reliable understanding of the dynamics in such a regime is required. Unfortunately, most of these theories fail to define well posed initial value problems, which prevents at face value from meeting such challenge. In this work, we introduce a consistent program able to remedy this situation. This program is inspired in the approach to "fixing" viscous relativistic hydrodynamics introduced by Israel and Stewart in the late 70's. We illustrate how to implement this approach to control undesirable effects of higher order derivatives in gravity theories and argue how the modified system still captures the true dynamics of the putative underlying theories in 3+1 dimensions. We sketch the implementation of this idea in a couple of effective theories of gravity, one in the context of Non-commutative geometry, and one in the context of Chern-Simons modified General Relativity.
26 pages, 10 figures. Matches published version
References in corpus (14)
- Nonlinear Fluid Dynamics from Gravity
- Relativistic viscous hydrodynamics, conformal invariance, and holography
- The relativistic pulsar-white dwarf binary PSR J1738+0333 II. The most stringent test of scalar-tensor gravity
- xPert: Computer algebra for metric perturbation theory
- The Parameterized Post-Friedmann Framework for Theories of Modified Gravity: Concepts, Formalism and Examples
- Conformal Nonlinear Fluid Dynamics from Gravity in Arbitrary Dimensions
- Testing the no-hair theorem with black hole ringdowns using TIGER
- Projected Constraints on Scalarization with Gravitational Waves from Neutron Star Binaries
- Turbulent Black Holes
- The Initial Value Formulation of Dynamical Chern-Simons Gravity
- Dirichlet boundary value problem for Chern-Simons modified gravity
- Coupled Oscillator Model for Nonlinear Gravitational Perturbations
- Gravity and a Geometrization of Turbulence: An Intriguing Correspondence
- Numerical Measurements of Scaling Relations in Two-Dimensional Conformal Fluid Turbulence
Cited by in corpus (7)
- Evolution of Einstein-scalar-Gauss-Bonnet gravity using a modified harmonic formulation
- Scalarized Black Hole dynamics in Einstein dilaton Gauss-Bonnet Gravity
- Qubit Heating Near a Hotspot
- Well-posedness of cubic Horndeski theories
- Numerical renormalization group-based approach to secular perturbation theory
- Numerical Relativity as a New Tool for Fundamental Cosmology
- Influence Through Mixing: Hotspots as Benchmarks for Basic Black-Hole Behaviour