Mixmaster universe: A chaotic Farey tale
Abstract
When gravitational fields are at their strongest, the evolution of spacetime is thought to be highly erratic. Over the past decade debate has raged over whether this evolution can be classified as chaotic. The debate has centered on the homogeneous but anisotropic mixmaster universe. A definite resolution has been lacking as the techniques used to study the mixmaster dynamics yield observer-dependent answers. Here we resolve the conflict by using observer-independent fractal methods. We prove the mixmaster universe is chaotic by exposing the fractal strange repellor that characterizes the dynamics. The repellor is laid bare in both the six-dimensional minisuperspace of the full Einstein equations and in a two-dimensional discretization of the dynamics. The chaos is encoded in a special set of numbers that form the irrational Farey tree. We quantify the chaos by calculating the strange repellor's Lyapunov dimension, topological entropy, and multifractal dimensions. As all of these quantities are coordinate or gauge independent, there is no longer any ambiguity-the mixmaster universe is indeed chaotic.
- Publication:
-
Physical Review D
- Pub Date:
- June 1997
- DOI:
- 10.1103/PhysRevD.55.7489
- arXiv:
- arXiv:gr-qc/9612066
- Bibcode:
- 1997PhRvD..55.7489C
- Keywords:
-
- 98.80.Hw;
- 05.45.+b;
- 95.10.Eg;
- 98.80.Cq;
- Orbit determination and improvement;
- Particle-theory and field-theory models of the early Universe;
- General Relativity and Quantum Cosmology;
- Nonlinear Sciences - Chaotic Dynamics
- E-Print:
- 45 pages, RevTeX, 19 Figures included, submitted to PRD