collaborators

5 papers

hep-th2026

Quantum Gravity Cutoff from Axions: A Type IIB Landscape Study

Matthew Reece, Tom Rudelius, Christopher Tudball

Extra-dimensional axions have coupling strength related to fundamental, ultraviolet physics. It has been proposed that the properties of such axions imply a bound on the quantum gr…

hep-th2026

Sharpening the Supersymmetric Axion Weak Gravity Conjecture

Muldrow Etheredge, Matthew Reece, Tom Rudelius +1

The Axion Weak Gravity Conjecture provides one of the most effective quantum gravity tools for constraining particle physics and cosmology, but it has long been thought of as a sli…

hep-th2026

Nonabelian Lattice Weak Gravity Conjecture and Monopole Confinement

Matthew Reece, Tom Rudelius

Within the known landscape of quantum gravity, most theories satisfy the Lattice Weak Gravity Conjecture (LWGC), which requires a superextremal particle at every site in the electr…

hep-th2025

Co-Scaling and Alignment of Electric and Magnetic Towers

Matthew Reece, Tom Rudelius, Christopher Tudball

Towers of electrically and magnetically charged states in quantum gravity often exhibit two important properties. First, the ratio of the mass (or tension) of electrically charged…

hep-th2025

Confined monopoles and failure of the Lattice Weak Gravity Conjecture

Muldrow Etheredge, Ben Heidenreich, Nicholas Pittman +3

Almost all known theories of quantum gravity satisfy the Lattice Weak Gravity Conjecture (LWGC), which posits that a consistent theory of quantum gravity must have a superextremal…