Guided Wave Circuit Theory

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Lecturer
Mizumoto Tetsuya 
Place
Tue5-6  
Credits
Lecture2  Exercise0  Experiment0
Code
50105
Syllabus updated
2007/4/16
Lecture notes updated
2007/4/16
Access Index
Semester
Spring Semester

Outline of lecture

The lecture is focused on the guided wave theory and its application to the design of guided wave circuit in microwave, millimeter-wave and optical frequency region. Topics included are electromagnetic waves in waveguides, dispersion in an optical fiber, coupled mode theory, electromagnetic waves in a periodical structure, scattering matrix representation, eigen excitation, and the design of some guided wave circuits.

Purpose of lecture

The lecture is focused on the guided wave theory and its application to the design of guided wave circuit in microwave, millimeter-wave and optical frequency regions.
Topics included are electromagnetic wave in waveguides, dispersion in an optical fiber, coupled mode theory, electromagnetic wave in a periodical structure, scattering matrix representation, eigen excitation, and the design of some guided wave circuits.

Plan of lecture

1.Introduction to guided wave circuits
2.Electromagnetic wave propagation in transmission lines
3.Electromagnetic waves in planar waveguides for microwave and millimeter-wave
4.Eigen mode of optical planar waveguides
5.Wave propagation and dispersion in optical fibers
6.Coupled mode theory
7.Electromagnetic waves in periodic structures
8.Circuit representation by a scattering matrix
9.Eigen excitation and eigen values
10.Design of couplers and dividers
11.Design of resonators and multi/demultiplexers
12.Design of isolators and circulators

Textbook and reference

Text : Download the text from the following web site.
http://mizumoto-www.pe.titech.ac.jp/~tmizumot/lecture_note/guided_wave_circuit_theory/index.html
Reference : D.Marcuse, "Theory of Dielectric Waveguides," Academic Press

Related and/or prerequisite courses

Knowledge of fundamentals on the electromagnetic wave transmission of undergraduate course are required.

Evaluation

Evaluation is based on the term end examination.

Comments from lecturer

none

Supplement

[Office Hours]
Anytime you can visit my office with permission by email at
tmizumotツシpe.titech.ac.jp

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