2 項進行中

115-1 選課時程

進行中

  • 初選第一階段 6/15 – 6/18
  • 初選第二階段 6/22 – 6/25
  • 校際選修 進行中 8/24 – 9/18
  • 初選第三階段 8/31 – 9/3
  • 開學後加退選 進行中 9/7 – 9/21
  • 逾期加退選 9/21 – 9/24
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物理光學

Physical Optics

學期
107-2
學分
0 學分
當期課號
5098
永久課號
IEO5515
開課單位
光電工程學系
授課教師
謝美莉
校區
光復
類別
必修
上課時間表
週四
2
09:00–09:50
物理光學
CY201(光復)
3 節連堂
3
10:10–11:00
4
11:10–12:00

* 根據陽明交大上課時間表所列

概述

We will introduce the polarization of light and the optical propagation of light as applied to isotropic, anisotropic, inhomogeneous, periodic media.

先修科目

Electromagnetic field theory

備註

無備註

教學方式

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評分方式

作業部份: 考試部份: 評量部份: Grading: 20% Exam 20% Exam 20% Homeworks 40% Final

課程大綱
  • Review of electromagnetic field theory

    1.Electromagnetic fields 2.Maxwell equations 3.Poynting theory and electromagnetic power flow

    講授:
    3
  • Wave propagation in linear, isotropic and homogeneous media.

    1.Wave propagation in linear, isotropic 2.Phase and group velocity 3.Polarization of light 4.Uniform plane wave in lossless media 5.Reflection and refraction at planar boundaries for TE and TM polarizations 6.Brewster angle, critical angle and total internal reflection 7.Reflection and refraction in planar single layer 8.Reflection and refraction in multilayered media 9.Applications: thin film coating etc

    講授:
    12
  • Interference

    1. Two beam interference 2. Multi-beam interference 3. Interferometers

    講授:
    6
  • Polarization of light

    1.Jones calculus, retardation plates and polarizers

    講授:
    3
  • Wave propagation in anisotropic media

    1. Dielectric tensor classification of anisotropic media 2. Plane wave propagation in anisotropic media and dispersion relation 3. Light propagation in uniaxial and biaxial media 4. Power flow in anisotropic media 5. Index ellipsoid 6. Refraction and reflection at anisotropic interface 7. Optical activities and faraday rotation 8. Applications: anisotropic devices

    講授:
    19
  • Optical propagation in periodic media

    講授:
    3
週次計畫
週次主題
第 1 週

Review of electromagnetic field theory

第 2 週

Wave propagation in linear, isotropic and homogeneous media: 1. Wave propagation in linear, isotropic 2. Phase and group velocity 3.Uniform plane wave in lossless media

第 3 週

Wave propagation in linear, isotropic and homogeneous media: 1.Reflection and refraction at planar boundaries for TE and TM polarizations 2.Brewster angle, critical angle and total internal reflection

第 4 週

Wave propagation in linear, isotropic and homogeneous media: 1. Brewster angle, critical angle and total internal reflection 2. Reflection and refraction in planar single layer

第 5 週

Wave propagation in linear, isotropic and homogeneous media: 1.Reflection and refraction in multilayered media 2. Applications: thin film coating etc

第 6 週

3/25 Midterm 1 Interference: Two beam interference

第 7 週

Interference: Two beam interference and Multi-beam interference 4/2 no class

第 8 週

Interference: Multi-beam interference and Interferometers

第 9 週

Polarization of light: Jones calculus, retardation plates and polarizers

第 10 週

Wave propagation in anisotropic media: 1. Dielectric tensor classification of anisotropic media 2. Plane wave propagation in anisotropic media and dispersion relation

第 11 週

Wave propagation in anisotropic media: 1. Light propagation in uniaxial and biaxial media 2. Power flow in anisotropic media

第 12 週

5/6 Midterm 2 Wave propagation in anisotropic media: Refraction and reflection at anisotropic interface

第 13 週

Wave propagation in anisotropic media: Refraction and reflection at anisotropic interface Index ellipsoid

第 14 週

Wave propagation in anisotropic media: Index ellipsoid Optical activities and faraday rotation

第 15 週

Wave propagation in anisotropic media: Applications: anisotropic devices

第 16 週

Wave propagation in anisotropic media: Applications: anisotropic devices

第 17 週

Optical propagation in periodic media

第 18 週

Finals

教科書

Required Book(s) 1.A. Yariv & P. Yeh, “ Optical waves in crystals”(John Wiley & Sons) 2.Class notes Reference Book(s) 1. A. Yariv, “Optical electronics in modern communications” (Oxford) 2. H. A. Haus, “Waves and fields in Optoelectronics” (Prentice-Hall)

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