Hyperbolicity in spherical gravitational collapse in a Horndeski theory

Justin L. Ripley and Frans Pretorius
Phys. Rev. D 99, 084014 – Published 10 April 2019

Abstract

We numerically study spherical gravitational collapse in shift symmetric Einstein dilaton Gauss Bonnet (EdGB) gravity. We find evidence that there are open sets of initial data for which the character of the system of equations changes from hyperbolic to elliptic type in a compact region of the spacetime. In these cases evolution of the system, treated as a hyperbolic initial boundary value problem, leads to the equations of motion becoming ill-posed when the elliptic region forms. No singularities or discontinuities are encountered on the corresponding effective “Cauchy horizon.” Therefore it is conceivable that a well-posed formulation of EdGB gravity (at least within spherical symmetry) may be possible if the equations are appropriately treated as mixed type.

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  • Received 12 February 2019

DOI:https://doi.org/10.1103/PhysRevD.99.084014

© 2019 American Physical Society

Physics Subject Headings (PhySH)

Gravitation, Cosmology & Astrophysics

Authors & Affiliations

Justin L. Ripley* and Frans Pretorius

  • Department of Physics, Princeton University, Princeton, New Jersey 08544, USA

  • *jripley@princeton.edu
  • fpretori@princeton.edu

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Issue

Vol. 99, Iss. 8 — 15 April 2019

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