Research
My research lies at the interface of theoretical condensed matter physics, quantum materials, and computational many-body theory.
I am interested in how strong electronic interactions, topology, and orbital magnetism generate new phases of matter in low-dimensional systems, with particular emphasis on unconventional superconductivity, fractionalization, and moiré quantum materials.
Current research directions include:
- unconventional and topological superconductivity;
- the interplay between fractional Chern insulators, crystallization, and superconductivity;
- orbital magnetism and emergent magnetic fields;
- low-dimensional moiré materials;
- light–matter interaction phenomena;
- numerical many-body methods, including exact diagonalization, variational wavefunctions, and neural-network quantum states.
