5 papers
Visualizing orbital magnetism in electron doped rhombohedral multilayer graphene
Owen I. Sheekey, Trevor B. Arp, Benjamin A. Foutty +24
Electron doped rhombohedral multilayer graphene at high displacement field features an exceptionally flat band minimum with near-ideal quantum geometry. Experiments in this regime…
Correlated Phases in Spin-Orbit-Coupled Rhombohedral Trilayer Graphene
Jin Ming Koh, Jason Alicea, Ãtienne Lantagne-Hurtubise
Recent experiments indicate that crystalline graphene multilayers exhibit much of the richness of their twisted counterparts, including cascades of symmetry-broken states and uncon…
Quantum geometry and bounds on dissipation in slowly driven quantum systems
Iliya Esin, Ãtienne Lantagne-Hurtubise, Frederik Nathan +1
We show that energy dissipation in slowly-driven, Markovian quantum systems at low temperature is linked to the geometry of the driving protocol through the quantum (or Fubini-Stud…
Symmetry-broken metallic orders in spin-orbit-coupled Bernal bilayer graphene
Jin Ming Koh, Alex Thomson, Jason Alicea +1
We explore Bernal bilayer graphene in the presence of long-range Coulomb interactions, short-range Hund's coupling, and proximity-induced Ising spin-orbit coupling using self-consi…
Topological frequency conversion in rhombohedral multilayer graphene
Ãtienne Lantagne-Hurtubise, Iliya Esin, Gil Refael +1
We show that rhombohedral multilayer graphene supports topological frequency conversion, whereby a fraction of electrons transfer energy between two monochromatic light sources at…