Fixing the dynamical evolution in scalar-Gauss-Bonnet gravity
arXiv:2206.00014 · doi:10.1103/PhysRevD.106.064061
Abstract
One of the major obstacles to testing alternative theories of gravity with gravitational-wave data from merging binaries of compact objects is the formulation of their field equations, which is often mathematically ill-suited for time evolutions. A possible way to address these delicate shortcomings is the fixing-the-equations approach, which was developed to control the behaviour of the high-frequency modes of the solutions and the potentially significant flow towards ultra-violet modes. This is particularly worrisome in gravitational collapse, where even black hole formation might be insufficient to shield regions of the spacetime where these pathologies might arise. Here, we focus (as a representative example) on scalar-Gauss-Bonnet gravity, a theory which can lead to ill-posed dynamical evolutions, but with intriguing stationary black hole physics. We study the spherical collapse of a scalar pulse to a black hole in the fixing-the-equations approach, comparing the early stages of the evolution with the unfixed theory, and the later stages with its stationary limit. With this approach, we are able to evolve past problematic regions in the original theory, resolve black hole collapse and connect with the static black hole solutions. Our method can thus be regarded as providing a weak completion of the original theory, and the observed behaviour lends support for considering previously found black hole solutions as a natural outcome of collapse scenarios.
9+3 pages, 6 figures, matches version published in PRD
References in corpus (21)
- Tests of General Relativity with Binary Black Holes from the second LIGO-Virgo Gravitational-Wave Transient Catalog
- Spontaneously scalarised Kerr black holes
- Neutron-star mergers in scalar-tensor theories of gravity
- Spin-induced scalarized black holes
- Spin-induced black hole scalarization in Einstein-scalar-Gauss-Bonnet theory
- Dynamics of spontaneous black hole scalarization and mergers in Einstein-scalar-Gauss-Bonnet gravity
- Evolution of Einstein-scalar-Gauss-Bonnet gravity using a modified harmonic formulation
- Dynamical descalarization in binary black hole mergers
- Fixing extensions to General Relativity in the non-linear regime
- Dynamics of a Z2 symmetric EdGB gravity in spherical symmetry
- Black hole scalarization with Gauss-Bonnet and Ricci scalar couplings
- Spin-induced dynamical scalarization, de-scalarization and stealthness in scalar-Gauss-Bonnet gravity during black hole coalescence
- No evidence of kinetic screening in simulations of merging binary neutron stars beyond general relativity
- Kinetic screening in nonlinear stellar oscillations and gravitational collapse
- The onset of spontaneous scalarization in generalised scalar-tensor theories
- Black Hole Binaries in Cubic Horndeski Theories
- Dynamical descalarization with a jump during black hole merger
- UV completions, fixing the equations and nonlinearities in -essence
- K-dynamics: well-posed 1+1 evolutions in K-essence
- The shape of Scalar Gauss-Bonnet Gravity
- A Well-Posed UV Completion for Simulating Scalar Galileons
Cited by in corpus (16)
- The Science of the Einstein Telescope
- Nonlinear studies of binary black hole mergers in Einstein-scalar-Gauss-Bonnet gravity
- Well-posedness of the four-derivative scalar-tensor theory of gravity in singularity avoiding coordinates
- Modelling self-consistently beyond General Relativity
- Binary neutron star mergers in Einstein-scalar-Gauss-Bonnet gravity
- Inspiral-merger-ringdown waveforms in Einstein-scalar-Gauss-Bonnet gravity within the effective-one-body formalism
- Fixing the dynamical evolution of self-interacting vector fields
- Scalarization of isolated black holes in scalar Gauss-Bonnet theory in the fixing-the-equations approach
- Treatments and placebos for the pathologies of effective field theories
- Einstein-Klein-Gordon system via Cauchy-characteristic evolution: Computation of memory and ringdown tail
- Quasistationary hair for binary black hole initial data in scalar Gauss-Bonnet gravity
- Two-body problem in theories with kinetic screening
- New model of spontaneous scalarization of black holes induced by curvature and matter
- Gravitational collapse in Quadratic Gravity
- The well-posedness of the Cauchy problem for self-interacting vector fields
- Internal symmetry to the rescue: well-posed 1+1 evolution of self-interacting vector fields