Optoelectronic Materials and Devices I

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Course Curriculum

Introduction to Optoelectronics Details 37:21
Optical Processes in Semiconductors Details 46:14
Direct and Indirect Gap semiconductors Details 46:48
Heavy Doping Effects Details 53:33
Excitons and Lattice Vibrations Details 48:29
Electric and Magnetic Field effects Details 40:58
Excutons in Quantum wells Details 47:31
Luminescence in solids Details 49:20
Radiatne Recombination and Absorption Details 0:46
Recombination Mechanisms Details 46:1
Non Radiative Recombination Details 52:20
Auger and Surface Recombination Details 46:25
Fundamentals of Photodetectors Details 45:4
Background Fluctuations and Noise Details 44:41
Thermal Detectors and Noise Details 51:33
Quantum Detectors – E and PC Details 46:37
Quantum Detectors – E and PC Details 49:25
PIN Detectors Details 48:15
Resonant cavity dectors Details 49:18
Avalanche Photodiodes (APD) Details 0:46
Quantum Well Infrared Detector Details 46:34
Light Emitting Diodes – LEDs – Details 52:34
Light Emitting Diodes – LEDs – Details 44:3
Semiconductor Lasers – 1 Details 44:40
Semiconductor Lasers – 2 Details 44:53
Threshold Current Density Details 41:59
Confinement Factor Details 48:4
Stripe Geometry Lasers Details 46:2
Radiation and Device Fabrication Details 43:52
Optical Emission Spectra Details 39:8
Gain in Semiconductor Lasers Details 44:26
DFB and DBR Lasers Details 45:20
Vesels and strained layers Details 48:9
Light Emitting Diodes – LEDs – Details 50:31
Quantum Confinement Details 39:44
Quantum Confinement – II Details 45:47
Quantum Well LASERs Details 41:9
Seed Devices Details 42:44
Quantum Well LASERs – II Details 42:7
Electro Optic Modulators Details 48:34
Electro Optic Modulators – II Details 45:26
OEIC and Systems Applications Details 50:34

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