Quantum post-Newtonian theory for corpuscular Black Holes
Abstract
We discuss an effective theory for the quantum static gravitational potential in spherical symmetry up to the first post-Newtonian correction. We build a suitable Lagrangian from the weak field limit of the Einstein-Hilbert action coupled to pressureless matter. Classical solutions of the field equation lead to the correct post-Newtonian expansion. Furthermore, we portray the Newtonian results in a quantum framework by means of a coherent quantum state, which is properly corrected to accomodate post-Newtonian corrections. These considerations provide a link between the corpuscular model of Dvali and Gomez and standard post-Newtonian gravity, laying the foundations for future research.
Keywords
Cite
@article{arxiv.1710.04487,
title = {Quantum post-Newtonian theory for corpuscular Black Holes},
author = {Andrea Giugno},
journal= {arXiv preprint arXiv:1710.04487},
year = {2018}
}
Comments
6 pages, no figures, talk presented at the 3rd Karl Schwarzschild Meeting (2017)