paper

The nature of the gravitational vacuum

arXiv:1905.12004 · doi:10.1142/S021827181944005X

Abstract

The vacuum must contain virtual fluctuations of black hole microstates for each mass . We observe that the expected suppression for is counteracted by the large number of such states. From string theory we learn that these microstates are extended objects that are resistant to compression. We argue that recognizing this `virtual extended compression-resistant' component of the gravitational vacuum is crucial for understanding gravitational physics. Remarkably, such virtual excitations have no significant effect for observable systems like stars, but they resolve two important problems: (a) gravitational collapse is halted outside the horizon radius, removing the information paradox; (b) spacetime acquires a `stiffness' against the curving effects of vacuum energy; this ameliorates the cosmological constant problem posed by the existence of a planck scale .

7 pages, 2 figures (Essay awarded an honorable mention in the Gravity Research Foundation 2019 Awards for Essays on Gravitation)