ECE 595E Lecture 31: Coupled Mode Theory Simulation (CMT)

By Peter Bermel

Electrical and Computer Engineering, Purdue University, West Lafayette, IN

Published on

Abstract

Outline:

  • Recap from Wednesday
  • Overview of Coupled Mode Theory
  • Derivation of Coupled Mode Equations
  • Applications:
    • Single Waveguides
    • Add-Drop filters
    • Waveguide Bends
    • Channel Drop
    • T-Splitters
    • Nonlinear Kerr Waveguides

Cite this work

Researchers should cite this work as follows:

  • Peter Bermel (2013), "ECE 595E Lecture 31: Coupled Mode Theory Simulation (CMT)," https://nanohub.org/resources/17553.

    BibTex | EndNote

Time

Location

EE 226, Purdue University, West Lafayette, IN

Tags

ECE 595E Lecture 31: Coupled Mode Theory Simulation (CMT)
  • Lecture 31: Coupled Mode Theory (CMT) 1. Lecture 31: Coupled Mode Theor… 0
    00:00/00:00
  • Recap from Wednesday 2. Recap from Wednesday 13.113113113113114
    00:00/00:00
  • Outline 3. Outline 180.11344678011346
    00:00/00:00
  • Coupled-Mode Theory: Basic Concept 4. Coupled-Mode Theory: Basic Con… 244.27761094427763
    00:00/00:00
  • Derivation of Coupled Mode Equations 5. Derivation of Coupled Mode Equ… 428.52852852852857
    00:00/00:00
  • Derivation of Coupled Mode Equations 6. Derivation of Coupled Mode Equ… 685.91925258591925
    00:00/00:00
  • Derivation of Coupled Mode Equations 7. Derivation of Coupled Mode Equ… 969.96996996997
    00:00/00:00
  • Single Waveguide 8. Single Waveguide 1413.546880213547
    00:00/00:00
  • Application: Add-Drop Filters 9. Application: Add-Drop Filters 1877.5775775775776
    00:00/00:00
  • Application: Waveguide Bends 10. Application: Waveguide Bends 1996.9302635969304
    00:00/00:00
  • Application: Channel Drop Filter 11. Application: Channel Drop Filt… 2115.6489823156489
    00:00/00:00
  • Application: Channel Drop Filter 12. Application: Channel Drop Filt… 2308.5085085085084
    00:00/00:00
  • Application: T-Splitter 13. Application: T-Splitter 2413.5135135135138
    00:00/00:00
  • Application: Kerr Nonlinearities 14. Application: Kerr Nonlineariti… 2607.0070070070069
    00:00/00:00
  • Conclusions 15. Conclusions 2851.1845178511844
    00:00/00:00
  • Next Class 16. Next Class 2884.0840840840842
    00:00/00:00