arXiv · 2604.21540
Hawking radiation from black holes in 2+1 dimensions
Abstract
The paper develops a model to understand the effective quantum geometry of a black hole horizon and the emission of Hawking spectrum in $2+1$ dimensions. Using the algebra of Hamiltonian charges on the horizon, we establish that one should view the black hole horizon as formed out of quantised lengths of elementary quanta of value $8\pi \ell_{P}\, n$, where $n\in \mathbb{N}$, and $\ell_{P}$ is the Planck length. We determine the black hole entropy using this equidistant length spectrum in the microcanonical ensemble and show that its value is close to the Bekenstein-Hawking entropy. To evaluate the Hawking spectrum, we note that, to an observer near the black hole horizon, the entropy (or length of horizon cross-section) is related to the black hole energy. Hence, one may develop a formulation of length ensemble (similar to the area canonical ensemble of Krasnov) from which the black body spectrum may be obtained directly. This local observer perceives a Hawking spectrum whose temperature is modified by the Tolman factor.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Akriti Garg, Ayan Chatterjee. 2026-04-23. Hawking radiation from black holes in 2+1 dimensions. https://arxiv.org/abs/2604.21540
Cite the original work for its findings. Save a collection to share your selection of sources.