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Related lectures (32)
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Charges at Interfaces: Fermi-Dirac Distribution and Density of States
Explores Fermi-Dirac distribution, density of states, charge injection in semiconductors, and electrode materials.
Semiconductor Materials and Nanostructures
Covers the history of semiconductor materials, band structure, charge carriers, doping, electronic transport, optical properties, and applications.
Semiconductors: Band Structure and Carrier Concentration
Explains band structure, density of states, Fermi distribution, and carrier densities.
Nanowires: Quantum Effects and Conductance Jumps
Delves into nanowires' quantum behavior, resistance jumps, and practical experimentation methods.
Density of States in Semiconductor Devices
Explores density of states in semiconductor devices, covering electron gas, energy bands, Fermi-Dirac distribution, and band structures.
Synchrotrons and X-ray Free-Electron Lasers
Explores synchrotrons, x-ray lasers, and photoelectron spectroscopies, including ARPES techniques and practical aspects.
Quantum Mechanics: Free Carrier Concentration and Maxwell Distribution
Discusses quantum mechanics principles, focusing on free carrier concentration and Maxwell distribution in metals and gases.
Free Electron Dispersion and Kronig-Penney Model
Explains free electron dispersion and the Kronig-Penney model in crystal structures.
Unified View of Charge Transport in Organic Semiconductors
Provides a unified understanding of charge transport mechanisms in organic semiconductors using the generalized Einstein relation.
DFT: Thomas-Fermi model
Explores the Thomas-Fermi model in Density Functional Theory, discussing electron-electron interaction approximation and challenges in expressing kinetic energy.
Quantum Science: Applications of Statistical Physics
Explores the applications of quantum science in statistical physics, covering semiconductors, photons, and quantum point contacts.
Charge Transport in Organic Semiconductors: Mechanisms and Interfaces
Covers charge transport mechanisms in organic semiconductors, focusing on active regions, interfaces, and the influence of disorder on conductivity.
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