To introduce the reflections of photonics theory to optical communication and related technologies, to examine the application relationship of basic concepts and to give the realization of optical communication elements.
20
Contribution of the Course to Professional Development
1. Defines the concept of Electro-Optical System.
2. To understand the basic principles of optics.
3. To learn the subjects of photonics.
21
Learning Outcomes:
1
Defines the concept of Electro-Optical System.;
2
To understand the basic principles of optics.;
3
To learn the subjects of photonics.;
22
Course Content:
Week
Theoretical
Practical
1
Geometric optics: Fermat's principle
2
Geometric optics: Reflection, refraction and Fresnel relations
3
Geometric optics: Total internal reflection, fiber guiding
Photon characteristic of light, interaction of light with matter
11
Absorption, spontaneous and forced radiation
12
Lasers and their applications
13
Biological effects of optical radiation
14
Security in photonic systems
23
Textbooks, References and/or Other Materials:
CHANG W. S. C., Principles of Lasers and Optics, Cambridge University Press,2005. Saleh, Bahaa E. A.Fundamentals of photonics, John Wiley and Sons Inc., 2nd ed. 2007 Quimby R. S., Photonics and Lasers: An Introduction, Wiley, 2006. Lecture notes
24
Assesment
TERM LEARNING ACTIVITIES
NUMBER
PERCENT
Midterm Exam
1
40
Quiz
0
0
Homeworks, Performances
0
0
Final Exam
1
60
Total
2
100
Contribution of Term (Year) Learning Activities to Success Grade
40
Contribution of Final Exam to Success Grade
60
Total
100
Measurement and Evaluation Techniques Used in the Course
Information
25
ECTS / WORK LOAD TABLE
Activites
NUMBER
TIME [Hour]
Total WorkLoad [Hour]
Theoretical
14
3
42
Practicals/Labs
0
0
0
Self Study and Preparation
14
2
28
Homeworks, Performances
0
0
0
Projects
0
0
0
Field Studies
0
0
0
Midtermexams
1
25
25
Others
0
0
0
Final Exams
1
25
25
Total WorkLoad
120
Total workload/ 30 hr
4
ECTS Credit of the Course
4
26
CONTRIBUTION OF LEARNING OUTCOMES TO PROGRAMME QUALIFICATIONS