Universality of curvature invariants in critical vacuum gravitational collapse
arXiv:2102.09579 · doi:10.1103/PhysRevLett.127.011104
Abstract
We report on a numerical study of gravitational waves undergoing gravitational collapse due to their self-interaction. We consider several families of asymptotically flat initial data which, similar to the well known Choptuik's discovery, can be fine-tuned between dispersal into empty space and collapse into a black hole. We find that near-critical spacetimes exhibit behavior similar to the collapse of scalar field: For different families of initial data, we observe universal "echoes" in the form of irregularly repeating approximate scaled copies of the same piece of spacetime.
5 pages, 3 figures. This updated version matches the published letter. The changes include the values of echo scaling ratios, simplified initial data description and a more readable Fig. 2
References in corpus (5)
- Constrained evolution in axisymmetry and the gravitational collapse of prolate Brill waves
- On critical collapse of gravitational waves
- Evolutions of centered Brill waves with a pseudospectral method
- Critical phenomena in the gravitational collapse of electromagnetic waves
- A semi-linear wave model for critical collapse
Cited by in corpus (13)
- Critical phenomena in the collapse of gravitational waves
- Evolution of Brill waves with an adaptive pseudospectral method
- Critical phenomena in the gravitational collapse of electromagnetic dipole and quadrupole waves
- Critical phenomena in the collapse of quadrupolar and hexadecapolar gravitational waves
- Twist-free axisymmetric critical collapse of a complex scalar field
- Formulation Improvements for Critical Collapse Simulations
- The Bondi problem revisited: a spectral domain decomposition code
- Vacuum axisymmetric gravitational collapse revisited: preliminary investigation
- Critical phenomena in gravitational collapse with competing scalar field and gravitational waves, in 4+1 dimensions
- Twist and higher modes of a complex scalar field at the threshold of collapse
- Comparison of linear Brill and Teukolsky waves
- Critical collapse of a massive scalar field in semi-classical loop quantum gravity
- New numerical framework for the generalized Baumgarte-Shapiro-Shibata-Nakamura formulation: The vacuum case for spherical symmetry