arXiv · 1009.5406
Scaling Limit of the Noncommutative Black Hole
Abstract
We show that the recent `quantum' black hole wave operator in the $κ$-Minkowski or bicrossproduct model quantum spacetime has a natural scaling limit $λ_p\to 0$ at the event horizon. Here $λ_p$ is the Planck time and the geometry at the event horizon in Planck length is maintained at the same time as the limit is taken, resulting in a classical theory with quantum gravity remnants. Among the features is a frequency-dependent `skin' of some $ω\overν$ Planck lengths just inside the event horizon for $ω>0$ and just outside for $ω<0$, where $ν$ is the frequency associated to the Schwarzschild radius. We use bessel and hypergeometric functions to analyse propagation through the event horizon and skin in both directions. The analysis confirms a finite redshift at the horizon for positive frequency modes in the exterior.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Shahn Majid. 2010-09-27. Scaling Limit of the Noncommutative Black Hole. https://doi.org/10.1088/1742-6596%2F284%2F1%2F012003
Cite the original work for its findings. Save a collection to share your selection of sources.