Lab Demonstration : Interaction of light with matter
20
Optical Amplification
21
Three Level Systems
22
Four Level Systems
23
EDFA Introduction
24
EDFA Tutorial
25
Lasers Part 1
26
Lab Demonstration: EDFA Characterization
27
Lasers part- 02
28
Lasers part- 03
29
Lasers part- 04
30
Lab Demonstration: Fiber Laser
31
Semiconductor light Source and detector Band structure
32
Semiconductor light Source and detector Light emission
33
Semiconductor light Source and detector LED Characteristics
34
Lab Demonstration : Semiconductor Sources
35
Lab Demonstration: Semiconductor Detectors
36
Semiconductor Detectors 3
37
Semiconductor Detectors 2
38
Semiconductor Detectors 1
39
Semiconductor light Source and detector Laser Characteristics
40
Semiconductor Detectors - 4
41
Light manipulation-Mallus' Law
42
Light manipulation-Birefringence
43
Light manipulation-Faraday Rotation
44
Lab Demonstration: Manipulation of Light Intensity & Polarization
45
Non-linear optics-Pockels effect
46
Non-linear optics-Kerr Effect
47
Lab Demonstration: Manipulation of Light Electro Optic Modulator (EOM)
48
Non linear optics stimulated Brillouin scattering
49
Non linear optics stimulated Raman scattering
Description:
COURSE OUTLINE: Introductory course in photonics leading to more advanced courses such as Lasers, Optical Communications, Optical Sensors and Photonics Integrated Circuits. The learning objectives are: (1) Learn the fundamental principles of photonics and light-matter interactions, (2) Develop the ability to formulate problems related to photonic structures/processes and analyze them, and (3) Understand processes that help to manipulate the fundamental properties of light.