中文

Type II Critical Collapse of a Self-Gravitating Nonlinear $\sigma$-Model

广义相对论与量子宇宙学 2016-08-15 v3

摘要

We report on the existence and phenomenology of type II critical collapse within the one-parameter family of SU(2) σ\sigma-models coupled to gravity. Numerical investigations in spherical symmetry show discretely self-similar (DSS) behavior at the threshold of black hole formation for values of the dimensionless coupling constant \ccbeta\ccbeta ranging from 0.2 to 100; at 0.18 we see small deviations from DSS. While the echoing period Δ\Delta of the critical solution rises sharply towards the lower limit of this range, the characteristic mass scaling has a critical exponent γ\gamma which is almost independent of \ccbeta\ccbeta, asymptoting to 0.1185±0.00050.1185 \pm 0.0005 at large \ccbeta\ccbeta. We also find critical scaling of the scalar curvature for near-critical initial data. Our numerical results are based on an outgoing-null-cone formulation of the Einstein-matter equations, specialized to spherical symmetry. Our numerically computed initial-data critical parameters pp^* show 2nd order convergence with the grid resolution, and after compensating for this variation in pp^*, our individual evolutions are uniformly 2nd order convergent even very close to criticality.

引用

@article{arxiv.gr-qc/0002067,
  title  = {Type II Critical Collapse of a Self-Gravitating Nonlinear $\sigma$-Model},
  author = {Sascha Husa and Christiane Lechner and Michael Pürrer and Jonathan Thornburg and Peter C. Aichelburg},
  journal= {arXiv preprint arXiv:gr-qc/0002067},
  year   = {2016}
}

备注

23 pages, includes 10 postscript figure files, uses REVTeX, epsf, psfrag, and AMS math fonts (amstex + amssymb); to appear in PRD15. Summary of revisions from v2: fix wrong formula in figure 6 caption and y-axis label, also minor wording changes and update publication status of refs 5-7