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Lecture
Photodiodes: Operation and Characteristics
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Photodiodes: Design and Optimization of Heterojunctions
Covers the design and optimization of photodiodes, focusing on enhancing performance through material selection and the importance of the depletion region.
Configurational Forces: Defects in Materials
Explores configurational forces in materials, emphasizing equilibrium conditions and defect interactions.
Formation of PN Junction
Explains the formation of a PN junction in semiconductor devices and its characteristics, including current-voltage behavior and temperature effects.
Defects: Structure and Stability
Explores the structure and stability of defects in crystals, emphasizing their impact on material properties.
Magnetic Effects in Materials
Explores magnetic effects, dielectric behavior, and properties of ferroelectric and piezoelectric materials.
Diode Schottky and PN Heterojunctions: Band Structure Analysis
Covers the construction of band diagrams for Schottky diodes and PN heterojunctions in semiconductor physics.
Cosmological Puzzles: Dark Matter and Energy
Explores fundamental cosmological puzzles related to dark matter and energy.
Ohm's Law and Resistance in Materials
Covers Ohm's law, resistance in materials, units and values, and perfect conductors versus resistors.
Imaging Electric Fields and Soft Matter: Multidimensional TEM
Explores imaging electric fields, 3D shapes, and soft matter using multidimensional TEM.
Vortex Pinning: Energy Landscape and Elasticity
Explores vortex pinning in superconductors, focusing on energy landscape creation and vortex elasticity.