This course gives an introduction to Lasers by both considering fundamental principles and applications. Topics that are covered include the theory of lasers, laser resonators and laser dynamics.
In addition to the basic concepts, a variety of interesting ...
This course introduces the principles of nonlinear optics, their use in photonic integrated circuits and the applications of this technology for telecommunication, spectroscopy and metrology. ...
This course gives an introduction to transducers by both considering fundamental principles and their application in classical and quantum systems. The course builds up on the fundamental concept of coupling of two subsystems as a mean to use one subsystem ...
The lecture, taught by Prof. Jean-Jacques Greffet, covers recent developments in the control of light-matter interaction at the nanoscale using resonant structures such as micro-cavities and antennas. It provides the essential theoretical tools to describe ...
This course gives an overview of the current trends in semiconductor nanophotonics, with an emphasis on quantum nanostructures and optical cavities. Different light-matter interaction regimes in cavity-quantum structure systems are discussed. Nanophotonic ...
Ce cours présente différentes facettes de l'optique moderne et met à la fois l'accent sur des bases rigoureuses et des applications pratiques. Le cours inclut une partie théorique avec un cours et des exercices, ainsi qu'une partie expérimentale avec des t ...
This course will give an overview of some of the most relevant aspects of CMOS technology used to design and fabricate integrated circuits.
Current research and challenges brought about by shrinking Field Effect Transistors down to the nm scale will also b ...