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Related lectures (202)
Quantum Nanostructures: Growth and Fabrication
Covers epitaxy, quantum nanostructures growth, and quantized energy levels computation.
Quantum Nanostructures: Energy Levels and Superlattices
Explores quantized energy levels in quantum wells and the physics of superlattices.
Semiconductor Laser Diodes
Explores electrical injection in semiconductors, transparency, laser oscillations, and edge-emitting laser diode design.
High Q Optical Microcavities
Explores high Q optical microcavities, covering topics such as quality-factor, nonlinear properties, and cavity quantum optomechanics.
Quantum Nanostructures: Entangled Photon Sources
Explores the properties of semiconducting quantum nanostructures, focusing on generating entangled photon pairs for quantum communication.
Physics of Photonic Semiconductor Devices
Explores the physics of photonic semiconductor devices, including LEDs, laser diodes, and quantum cascade lasers, emphasizing essential concepts and practical applications.
Spontaneous Emission in Quantum Wells
Explores spontaneous emission in quantum wells, electric field effects on optical transitions, and the quantum confined Stark effect.
Physics of Photonic Semiconductor Devices: LEDs and Laser Diodes
Explores the limitations of blue LEDs' efficiency and the efficiency droop in laser diodes.
Quantum Well Laser Diodes
Explores optimizing quantum well laser diodes, edge emitting laser diodes' beam properties, optical gain measurements, laser mode spacing, and the Schawlow-Townes linewidth formula.
Light-Emitting Diodes: Efficiency and Applications
Explores the efficiency and applications of light-emitting diodes, covering carrier injection, spectral distribution, and key markets.

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