Beecroft Building, Department of Physics, University of Oxford, Parks Road, Oxford, OX1 3PU
Professor Yves Hon Kwan, University of Texas at Dallas
Dumitru Calugaru, dumitru.calugaru@physics.ox.ac.uk
Abstract
Chern Insulators and Chiral Superconductivity in Rhombohedral Graphene
Rhombohedral multilayer graphene in a displacement field has recently emerged as a highly tunable arena for realizing strongly correlated and topological quantum phases. After surveying the key experimental developments, I will discuss three strands of our work on this material family. First, I will address the integer and fractional Chern insulators observed when the graphene is moiré-aligned to an hBN substrate, including how the "moiré capacitor effect" generates the requisite moiré coupling. Second, I will introduce the Berry Trashcan, an idealized model which captures the salient low-energy features of pristine rhombohedral graphene, and show how its simplicity enables analytic insights into chiral superconductivity. Finally, I will discuss puzzling recent quantum oscillation data in the vicinity of the putative chiral superconductor.