Covers the principles and applications of Brillouin Light Scattering for characterizing magnetic materials, including spin waves and magnon band structure.
Covers the fundamentals of the Magneto-optical Kerr Effect (MOKE) and its applications in ultrafast magnetization processes and magnetic optical spectroscopy.
Explores the engineering of intrinsic π-electron magnetism in carbon nanostructures, focusing on inducing magnetism in graphene and nanographenes through sublattice imbalance and topological frustration.
Outlines the MSE 432 exercise course on magnetic materials, detailing course structure, activities, and grading criteria for student presentations and experiments.