English

Numerical Relativity in Spherical Polar Coordinates: Off-center Simulations

General Relativity and Quantum Cosmology 2015-06-23 v2

Abstract

We have recently presented a new approach for numerical relativity simulations in spherical polar coordinates, both for vacuum and for relativistic hydrodynamics. Our approach is based on a reference-metric formulation of the BSSN equations, a factoring of all tensor components, as well as a partially implicit Runge-Kutta method, and does not rely on a regularization of the equations, nor does it make any assumptions about the symmetry across the origin. In order to demonstrate this feature we present here several off-centered simulations, including simulations of single black holes and neutron stars whose center is placed away from the origin of the coordinate system, as well as the asymmetric head-on collision of two black holes. We also revisit our implementation of relativistic hydrodynamics and demonstrate that a reference-metric formulation of hydrodynamics together with a factoring of all tensor components avoids problems related to the coordinate singularities at the origin and on the axes. As a particularly demanding test we present results for a shock wave propagating through the origin of the spherical polar coordinate system.

Keywords

Cite

@article{arxiv.1501.05259,
  title  = {Numerical Relativity in Spherical Polar Coordinates: Off-center Simulations},
  author = {Thomas W. Baumgarte and Pedro J. Montero and Ewald Müller},
  journal= {arXiv preprint arXiv:1501.05259},
  year   = {2015}
}

Comments

13 pages, 11 figures; matches version published in PRD

R2 v1 2026-06-22T08:08:49.129Z