Covers fundamental concepts in modern photonics, including ray optics, wave optics, polarization optics, material properties, plasmonics, and metamaterials.
Explores Neuromorphic Computing with Artificial Spin Systems, discussing the need for new computing paradigms and the potential of artificial spin systems for neuromorphic computing applications.
Explores the design and applications of reconfigurable metasurfaces in advanced optics, including switchable magnetic metamaterials and responsive metasurfaces.
Covers the use of electrochemically active metasurfaces for effective multispectral radiative heat management and their implications for energy efficiency and dynamic thermal regulation.
Explores dispersion engineering and nonlinear light generation in waveguides, focusing on manipulating light and achieving broad supercontinuum generation.
Explores the physics of photonic semiconductor devices, including LEDs, laser diodes, and quantum cascade lasers, emphasizing essential concepts and practical applications.
Introduces the fundamental concepts of optics, covering quantum optics, wavy optics, and electromagnetic optics, as well as the principles of reflection, refraction, and image formation.