Explores the interaction between electromagnetic waves and matter, from classical to quantum models, emphasizing the significance of probability distributions and energy states.
Covers the nature of electromagnetic waves, including plane waves and photons, their wavelength, period, and dispersion relationship, and the electromagnetic spectrum.
Explores constructing correlators using path integrals in quantum mechanics, focusing on the Euclidean and Minkowski spaces and the significance of imaginary time evolution.
Explores analog quantum simulation, focusing on shaping quantum systems to replicate specific Hamiltonians and achieving Bose-Einstein condensation in experiments.