Eskisehir Technical University Info Package Eskisehir Technical University Info Package
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About the Program Educational Objectives Key Learning Outcomes Course Structure Diagram with Credits Field Qualifications Matrix of Course& Program Qualifications Matrix of Program Outcomes&Field Qualifications
  • Graduate School of Sciences
  • Depart. of Electrical and Electronics Engineering
  • MS Program in Electronics and Electric Engineering
  • Program İn Electronics
  • Course Structure Diagram with Credits
  • Integrated Optical Waveguides
  • Description
  • Description
  • Learning Outcomes
  • Course's Contribution to Prog.
  • Learning Outcomes & Program Qualifications
  • ECTS Credit Load

Course Introduction Information

Code - Course Title EEM507 - Integrated Optical Waveguides
Course Type Required Courses
Language of Instruction İngilizce
Laboratory + Practice 3+0
ECTS 7.5
Course Instructor(s) PROFESÖR DOKTOR FERİDUN AY
Mode of Delivery Face to face
Prerequisites None
Courses Recomended There is no recommended optional program component for this course.
Required or Recommended Resources 1) C. R. Pollock, “Fundamentals of Optoelectronics”, Irwin, 1995.2) S. O. Kasap, “Optoelectronics and Photonics: Principles and Practices”, Prentice Hall, 2000.
Recommended Reading List K. Okamoto, “Fundamentals of Optical Waveguides”, 2nd Ed., Elsevier, 2006.
Assessment methods and criteria One midterm exam, one final exam, and homework assignments.
Work Placement Not Applicable
Sustainability Development Goals

Content

Weeks Topics
Week - 1 Optical Waveguides: Introduction and Motivation
Week - 2 The Wave Equation, Boundary Conditions for Dielectric Interfaces, Phase Shift upon Reflection
Week - 3 Electromagnetic Analysis of the Planar Waveguide, Eigenvalues for the Slab Waveguide
Week - 4 Guided Modes in a Waveguide, Dispersion in Waveguides
Week - 5 Wave Equation for Optical Fibers, Power Confinement in a Step-Index Fiber
Week - 6 Attenuation and Nonlinear Effects in Waveguides
Week - 7 Wave Equation Analysis of a Rectangular Waveguide
Week - 8 Perturbation Approach and Effective Index Method
Week - 9 The Beam Propagation Method for Analyzing Optical Waveguides
Week - 10 Coupled Mode Theory and Applications
Week - 11 Device Simulations Using Beam Propagation Method
Week - 12 Device Simulations Using Numerical Programs
Week - 13 State of the Art and Outlook

Learning Activities and Teaching Methods

  • Teaching Methods
  • Lecture
  • Discussion
  • Question & Answer
  • Problem Solving
  • Report Preparation and/or Presentation
  • Competences
  • Questoning
  • Problem solving
  • Applying theoretical knowledge into practice
  • Elementary computing skills

Assessment Methods

Assessment Method and Passing Requirements
Quamtity Percentage (%)
1.Midterm Exam 1 30
Homework 1 30
Final Exam 1 40
Toplam (%) 100
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