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Related lectures (11)
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Quantum Nanostructures: Growth and Fabrication
Covers epitaxy, quantum nanostructures growth, and quantized energy levels computation.
Thin Films: Growth and Interfaces
Explores dislocation motion, thin film growth models, and interface nature in modern technology.
2D Materials Synthesis and Properties
Covers the synthesis methods and properties of 2D Transition Metal Dichalcogenides, exploring doping, epitaxy, and heterostructures.
PVD 7: Other Techniques
Explores ion plating, MBE, and PLD techniques in thin film fabrication.
Nanoscale Semiconductors: Fabrication Challenges and Novel Properties
Explores nanoscale semiconductors, covering fabrication challenges, novel properties, epitaxy, nanowires, quantum applications, and dual-junction solar cells.
Strain and Heteroepitaxy
Explores the impact of strain on semiconductor band structures, epitaxy, critical thickness, and defect formation, emphasizing the role of Hooke's law and elasticity theory.
Thin Film Growth Models
Explores dislocation motion, thin film interfaces, growth models, and diffusion-limited aggregation, emphasizing interface properties and dislocation control.
Charge Transport Regimes: Transport Regimes
Explores different transport regimes in organic semiconductors and the one-electron Hamiltonian for charge transport.
Transistors: Fundamentals and Operation
Explores the fabrication process of transistors, the structure of pn junction diodes, and the operation of bipolar transistors.
Quantum Computing: Molecular Transistors and Logic Gates
Delves into molecular transistors, logic gates, and their design using molecular technology.
Bipolar Transistors: PNP and NPN Configurations
Covers the principles and optimization of bipolar transistors, focusing on PNP and NPN configurations and their performance characteristics.
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