Designing quantum materials on demand

We develop numerical models to predict and understand emergent quantum phenomena by studying the coupling between lattices, electrons, and spins. Our multiscale framework bridges atomistic simulations with the mesoscopic properties of large aperiodic quantum materials. We aim to guide experimental searches for exotic phases of matter, from superconductivity to topological states.

News

  • 2026 Our group receives a DOE Early Career Research Program award from the Office of Basic Energy Sciences for Structural Origins of Emergent Order in Moiré Materials. Abstract
  • 2026 Our group receives an NSF DMREF award for Engineering Novel Quantum Material Platform at Twisted Multilayer Interfaces. NSF award