Explores the theory and implementation of modelocking in ultrafast lasers, covering active and passive techniques, frequency domain interpretation, and pulse propagation.
Covers the analysis and control of electron dynamics on the femto-second time scale in laser fields, exploring density-functional theory and optimal control theory.
Covers various modules related to laser systems, including the basics of laser operation, different types of lasers, noise characteristics, and applications in modern technology.
Explores gain saturation in laser systems and the dynamics of atoms in different energy levels, emphasizing the balance between pumping and emission processes.
Covers the basic principles of laser operation, types of laser systems, noise characteristics, optical fibers, ultrafast lasers, and modern applications.