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Lecture
Photon Absorption in SC
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Basic Semiconductor Properties
Explores semiconductor fundamentals, including band structure, carrier concentration, and Fermi levels.
Semiconductor Devices II: Defects Engineering
Covers the analysis of measurements and defects engineering in semiconductor devices, including density of states and defect probing.
Semiconductor Properties: Band Structure and Carrier Statistics
Explores semiconductor band structure, carrier statistics, and impurities' impact on carrier activation and conductivity.
Light-Matter Interactions: Optical Detectors Overview
Provides an overview of light-matter interactions and their implications for optical detectors, including absorption, emission, and the characteristics of various semiconductor materials.
Laser Micro-Processing: Materials and Spectroscopy
Explores laser micro-processing of materials, fluorescence, spectroscopy, and band structures.
Semiconductor Devices II: Contact Resistance Modeling
Explores contact resistance modeling in semiconductor devices, focusing on gate voltage calculation and defect analysis.
Semiconductors: Basic Properties
Explores the basic properties of semiconductors, including conductivity, impurities, band gaps, and crystal structures.
Carrier Concentration: Extrinsic Semiconductors Overview
Covers the influence of doping on carrier concentrations in extrinsic semiconductors and the resulting shifts in the Fermi energy level.
Semiconductor Detectors
Explores the principles and operation of semiconductor detectors for radiation detection.
Band structure: Energy gaps and wave vectors
Explores the band structure of semiconductors, emphasizing energy gaps and wave vectors.