Covers the transport properties of semiconductors, focusing on charge dynamics, drift currents, and the relationship between mobility and conductivity.
Covers elastic scattering of fast electrons and their interactions with matter, including the derivation of the Mott formula and effective refractive index.
Covers continuity equations in semiconductor physics, focusing on charge conservation and the behavior of charge carriers in non-equilibrium conditions.
Covers infrared photodetectors, focusing on MSM detectors and photoconductors, their structures, advantages, disadvantages, and operational principles.
Explores magnetism, magnetic sources, fields, domains, hysteresis, energy contributions, types of magnetism, and nanoscale magnetic structure investigation.
Covers the principles and applications of Transmission Electron Microscopy, including imaging, diffraction, contrast mechanisms, and in situ techniques.