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Effective Masses in Semiconductor Physics
Covers effective masses in semiconductors, focusing on energy bands and their implications for materials like silicon and gallium arsenide.
Quantum Science: Applications of Statistical Physics
Explores the applications of quantum science in statistical physics, covering semiconductors, photons, and quantum point contacts.
Intermolecular Charge Delocalization in Organic Materials
Explores intermolecular charge delocalization in organic materials and the behavior of organic semiconductors.
Semiconductor Impurities and Carrier Transport
Explores extrinsic semiconductors, impurities, carrier transport properties, and their impact on conductivity and solar cell performance.
Band Structure: Energy Levels and Fermi Sphere
Explains energy levels, Fermi sphere, and periodic potentials in different dimensions.
Photoelectric Effect: Principles and Applications
Covers the principles of photoemissive detectors and the photoelectric effect, detailing electron behavior in metals and semiconductors under different light conditions.
Fermi Distribution and DOS
Explores Fermi distribution, DOS, Fermi level in materials, charge injection mechanisms.
Charges at Interfaces: Fermi-Dirac Distribution and Density of States
Explores Fermi-Dirac distribution, density of states, charge injection in semiconductors, and electrode materials.
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 Components: Band Diagram Interpretation
Covers the interpretation of band diagrams in semiconductor components, focusing on pn junction diodes and their behavior under applied voltage.