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About Us ABET ECE 1240

Photonics THeory 1

(3 credits)

Cross listed as PHYS 1160 and CHEM 1470

Description : This course gives the theoretical basis for modern optical techniques used  in experimental physics and chemistry and modern communications The course is co-taught by faculty in ECE, Physics, and Chemistry and is at a level is appropriate for senior undergraduates or graduate students in science or engineering.

Prerequisites : Physics 369 (classical optics) is required as a prerequisite unless specifically exempted by the instructor.  Prior course work in electric fields and waves is strongly encouraged; for example Physics 368 and Physics 160 or ECE 1259 and 1266

Text : Keigo Iizuka, Elements of Photonics, Wiley, 2002

Course Objectives : To provide the student with a working knowledge of the physical process governing refraction and transmission of light and information carried by light in simple components.

Topics Covered:

Part I, Fourier optics: lens design, holography, image processing.

Part II Crystal optics: wave propagation in anisotropic media, birefringence and waveplates, Jones matrices, electro-optics and acousto-optics, Pockel cells

Part III, Waveguides and fiber optics: semiconductor waveguides, fiber optic design, fiber optics in communication.

Class Schedule: Class meets twice a week for a lecture of 75 minutes. The three parts of the topics are lectured consecutively by three different faculty members. Homework assignments are given weekly and at the end of each part, an exam - cumulative for that part - is given.

Professional Component Contributions: Students learn how to approach real world problems; design optical and fiber-optical components. Become sensitive to the need of engineering choices to balance constraints with optimal characteristics. Analyze error margins.

Prepared by: Dietrich W. Langer

Date Prepared: April 19, 2005

 

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