Geometric Implications of the Weak Gravity Conjecture
Tom Rudelius (Berkeley)
Abstract: The Weak Gravity Conjecture holds that in any consistent theory of quantum gravity, gravity must be the weakest force. This simple proposition has surprisingly nontrivial physical consequences, which in the case of supersymmetric string/M-theory compactifications lead to nontrivial geometric consequences for Calabi-Yau manifolds. In this talk we will describe these conjectured geometric consequences in detail and show how they are realized in concrete examples, deriving new results about 5d supersymmetric black holes in the process.
HEP - theorymathematical physics
Audience: researchers in the topic
Series comments: Mailing List: to receive information about logging on to the talks: Send email to sympa@lists.johnshopkins.edu With subject: sub qft-geometry-seminars Leave body blank.
| Organizers: | Ibou Bah, Jonathan Heckman, Ken Intriligator, Sara Pasquetti, Shlomo Razamat, Sakura Schafer-Nameki*, Alessandro Tomasiello |
| *contact for this listing |
