Research
Computational Nano-Materials Physics Lab
Emergent quantum phenomena in complex materials
CNMP Lab combines quantum-mechanical theory with computational materials modeling to understand how strongly interacting electrons give rise to electronic, magnetic, and topological properties in transition-metal oxides and low-dimensional materials.
Current Research
Three questions shaping our work
Each theme begins with a physical question and leads to a focused project page with the central result, representative figures, and related publications.
Controlling crystal structures with strain
A new path toward stabilizing ferroelectric phases in HZO thin films.
View research theme →Magnetic interactions and topological transport
Exploring the quantum anomalous Hall effect in two-dimensional magnetic materials.
View research theme →Designing hydrogen cages for lower-pressure superconductivity
Using machine-learning potentials to search for host crystals that confine dense hydrogen networks and stabilize high-Tc phases at far lower pressure.
View research theme →How We Work
From quantum principles to predictive models
We connect physical insight with computation, moving between electronic structure, effective theories, and data-informed models.
