Gravitational collapse in AdS: instabilities, turbulence, and information
arXiv:2202.03378 · doi:10.1140/epjp/s13360-022-03048-0
Abstract
The gravitational collapse in asymptotically AdS spacetimes is studied, using the differential configurational entropy (DCE). The DCE is shown to comply with the instability of the Einstein-Klein-Gordon system, leading to different stages in the route to turbulence and final black hole formation, including near the critical behavior.
11 pages, 9 figures
References in corpus (18)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Weak Field Black Hole Formation in Asymptotically AdS Spacetimes
- Renormalization, averaging, conservation laws and AdS (in)stability
- Information Content of Spontaneous Symmetry Breaking
- Configurational entropy of anti-de Sitter black holes
- AdS/QCD duality and the quarkonia holographic information entropy
- Conserved quantities and dual turbulent cascades in Anti-de Sitter spacetime
- Pion family in AdS/QCD: the next generation from configurational entropy
- Configurational entropy of skyrmions and half-skyrmions in planar magnetic elements
- Differential configurational entropy and the gravitational collapse of a kink
- Deploying heavier meson states: configurational entropy hybridizing AdS/QCD
- Singularity avoidance in quantum gravity
- Quantum Corrections to the Gravitational Backreaction
- Violation of energy conditions and entropy production in holographic Bjorken flow
- A proof of the instability of AdS for the Einstein--massless Vlasov system
- Holographic Signatures of Critical Collapse
- Configuration entropy and confinement-deconfinement transition in higher-dimensional hard wall model
- Total hadronic and photonic cross sections and the nuclear configurational entropy concept