The black hole S-Matrix from quantum mechanics
Publication date
2016-11-22
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Abstract
We revisit the old black hole S-Matrix construction and its new partial wave expansion of 't Hooft. Inspired by old ideas from non-critical string theory \& $c=1$ Matrix Quantum Mechanics, we reformulate the scattering in terms of a quantum mechanical model\textemdash of waves scattering off inverted harmonic oscillator potentials\textemdash that exactly reproduces the unitary black hole S-Matrix for all spherical harmonics; each partial wave corresponds to an inverted harmonic oscillator with ground state energy that is shifted relative to the s-wave oscillator. Identifying a connection to 2d string theory allows us to show that there is an exponential degeneracy in how a given total initial energy may be distributed among many partial waves of the 4d black hole.
Keywords
Black Holes, M(atrix) Theories, Models of Quantum Gravity
Citation
Betzios, P, Gaddam, N & Papadoulaki, O 2016, 'The black hole S-Matrix from quantum mechanics', Journal of High Energy Physics, vol. 2016, no. 11, 131. https://doi.org/10.1007/JHEP11(2016)131