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Lecture
Optics: Electronic Materials
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Related lectures (32)
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Electronic Materials: Optical Properties
Explores electronic and optic properties of materials with lattice structures, including energy bands and band gaps.
Quantum Physics: Harmonic Oscillator and Hydrogen Atom
Explores harmonic oscillators, infinite wells, and the hydrogen atom's quantum physics.
Indirect Bandgap: Optical Detectors and Phonons
Covers the principles of optical detectors in semiconductors with an indirect bandgap, focusing on energy and momentum conservation during electron transitions.
Quantum Bound States
Explores quantum bound states, energy levels, and superposition in molecular bonding.
Optical Absorption: Understanding Semiconductor Behavior
Covers the principles of optical absorption in gases and semiconductors, detailing energy interactions and measurement techniques.
Semiconductor Band Structure
Explores semiconductor band structure, including Fourier transform, crystal structures, and bandgap systematics.
Solid State Physics II: Band Structures and Fermi Surfaces
Summarizes key concepts in Solid State Physics II, including band structures, Fermi surfaces, tight-binding approximation, and insulators vs. metals.
Optics: Electronic Materials
Explores band diagrams, absorption coefficients, disorder effects, and drift mobility in electronic materials like c-Si and a-Si.
Excitons, Luminescence and LEDs
Explores excitons, luminescence, and LEDs, including their formation, impact on carrier density, and working principles.
Light-Material Interaction: Fundamentals
Covers the basics of light-material interaction, including reflection, refraction, absorption, luminescence, and diffusion.