Explores the transition from spintronics to Majorana states in proximitized materials, focusing on magnetic proximity and topological superconductivity detection.
Explores computational discovery of novel materials, focusing on quantum spin Hall insulators and topological phases in transition metal dichalcogenides.
Explores topological matter, edge channels, periodic lattices, Berry curvature, and the Haldane model, focusing on their exploration with quantum gases.
Explores synthetic topological matter with ultracold dysprosium atoms, covering topology, the Hall effect, quantum simulation, and entanglement spectrum.
Delves into fragmentation in spin ice systems, covering magnetic ice rules, monopole vacuum, emergent gauge fields, topological defects, and quantum Monte Carlo simulations.
Explores the paradigms, history, alloys, applications, standards, and recent developments of superconductors, highlighting their unique properties and broad utility.