Delves into nanoscale properties, emphasizing surface effects and quantum phenomena, exploring electronic, mechanical, magnetic, photonic, and chemical properties unique to the nanoscale.
Explores the fundamental concepts of modes and states in quantum optics, covering topics such as optical frequency combs, homodyne detection, and quantum resource like squeezed states.
Explores topological matter, edge channels, periodic lattices, Berry curvature, and the Haldane model, focusing on their exploration with quantum gases.
Explores Landau levels and the Aharonov-Bohm effect in quantum physics, discussing charged particle behavior in magnetic fields and harmonic oscillators.
Showcases the advanced applications of the Scanning Tunneling Microscope beyond imaging, including spectroscopy for electronic properties and nanostructure assembly.