Explores the mechanical effects of light on atoms, deriving average forces exerted by light and introducing the concepts of dipole force and radiation pressure.
Explores synthetic topological matter with ultracold dysprosium atoms, covering topology, the Hall effect, quantum simulation, and entanglement spectrum.
Covers the technical test for the fall semester 2020 in advanced physics, including atoms, electrodes, and a playful scenario with Newton, Pascal, and Einstein.
Explores electromagnetic wave propagation, including Poynting vector, irradiance, dipole radiation, dielectric constant, and natural linewidth in atoms and radiation.
Explores the stability of atoms in quantum mechanics, emphasizing the Coulomb uncertainty principle and its impact on electron behavior within the nucleus.
Explores atoms and radiation lineshapes, covering linewidths, lifetime broadening, and broadening mechanisms, including Lorentzian and Doppler effects.