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Lecture
Excitons, Luminescence and LEDs
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PN Junctions and Heterostructures: Principles and Applications
Discusses the principles of pn junctions and heterostructures in semiconductor physics, focusing on their electrical characteristics and practical applications.
Understanding Semiconductor Equilibrium: Concepts and Applications
Discusses semiconductor physics, focusing on equilibrium states and energy band structures in homogeneous and inhomogeneous semiconductors.
Simulation of 2D Field Effect Transistors
Covers the simulation of 2D Field Effect Transistors and the advantages of using Green's Function.
Weak Bond Model: Defects in Electronic Materials
Explores equilibrium defect densities, band tail models, and defect creation in electronic materials.
Dispersion Relationships: Band Structures and Density of States
Discusses dispersion relationships, band structures, and density of states in real crystals and semiconductors.
Defects in Electronic Materials
Delves into the impact of defects in electronic materials, exploring band tails, XPS analysis, and defect creation mechanisms.
Semiconductor Optical Properties
Discusses semiconductor optical properties, including spectral ranges and energy levels.
Basic Semiconductor Properties
Explores semiconductor fundamentals, including band structure, carrier concentration, and Fermi levels.
Doping in Semiconductors: Energy Band Models
Covers the impact of doping on semiconductor properties and energy levels.
Semiconductors: Equilibrium Properties and Charge Dynamics
Covers the equilibrium properties of semiconductors, focusing on charge dynamics and the influence of temperature on electron-hole generation.