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Related lectures (30)
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Semiconductor Detectors: Principles and Applications
Explores semiconductor detectors for radiation detection, covering principles, applications, doping, p-n junctions, and detection mechanisms.
P-n Junction: Equilibrium and Out of Equilibrium
Explores the linearly graded p-n junction, quasi-Fermi levels, ideal current-voltage characteristics, and asymmetrical J-V curve.
Semiconductor Detectors
Explores the principles and operation of semiconductor detectors for radiation detection.
Doping Profiles in Semiconductor Components
Covers doping profiles in semiconductors, focusing on silicon bars doped with boron and phosphorus for applications like avalanche photodiodes.
Charge Carriers in Organic Semiconductors
Explores the formation of polarons, excitons, chemical doping effects, and charge carrier behavior in organic semiconductors.
Basic Semiconductor Properties
Explores semiconductor fundamentals, including band structure, carrier concentration, and Fermi levels.
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Semiconductors and Charge Carriers
Introduces semiconductor physics, covering materials, charge density, energy levels, doping, transport, and conductivity.
Diffusion Currents in Semiconductors: Principles and Equations
Covers diffusion currents in semiconductors, detailing their principles, equations, and interactions with drift currents.