校際選修

115-1 選課時程

進行中

  • 初選第一階段 6/15/2026
  • 初選第二階段 6/22/2026
  • 校際選修 8/24/2026
  • 初選第三階段 8/31/2026
  • 開學後加退選 9/7/2026
  • 逾期加退選 9/21/2026
選課資源

超材料與光子晶體

Metamaterials and photonic crystals

學期
112-1
學分
3 學分
當期課號
535371
永久課號
EECM30143
開課單位
電信工程研究所
授課教師
黃瑞彬
校區
光復
類別
選修
上課時間表
週五
5
13:20–14:10
超材料與光子晶體
ED203
3 節連堂
6
14:20–15:10
7
15:30–16:20

* 根據陽明交大上課時間表所列

概述

Metamaterials and photonic crystals both are made up of periodic structures; the former one has the period much smaller than the operating wavelength, while the period of the latter one generally is around or greater than half (operating) wavelength. Metamaterial is the so-called “physical” material exhibiting its unique electrical properties by structure configuration rather than chemical compositions. Metamaterials are found to be able to have the arbitrary effective refractive index that is hard to be synthesized using chemical materials. Additionally, the pass- and stop-bands in a photonic crystal can control the propagation of electromagnetic and light wave. Photonic crystals can mold the wave-guiding property and are popularly employed in designing optical devices. This course aims at introducing the applications of photonic crystals and metamaterials in electromagnetic/optical engineering. Moreover, the mathematical fundamentals will be covered to establish the skill of understanding the physical insight of wave process involved in both metamaterials and photonic crystals.

先修科目

普通物理,電磁學

教學方式

Homework 20% Midterm Exam 40% Final Exam 40%

評分方式

Problem set of each chapter Midterm Exam and final exam

週次計畫
週次主題
第 1 週Historical perspective on the research and applications of periodic structures including both photonic crystals and metamaterials
第 2 週Transmission-line network representation of a dielectric layer of finite thickness
第 3 週Scattering characteristics of plane wave by multipledielectric layers
第 4 週Transverse resonance technique for determining the guidingcharacteristics of waves in multiple dielectric layers
第 5 週Bloch–Floquet theorem
第 6 週Eigenwave in 1D dielectric and metallic gratings: Modal transmission-line approach
第 7 週Midterm Exam
第 8 週Scattering and guiding characteristics of a grating consisting of multiple 1D periodic layers
第 9 週Modal transmission-line approach for a 2D periodic metallicmedium: In-Plane propagation
第 10 週Modal transmission line approach for a 2D periodic dielectricmedium: In-Plane Propagation
第 11 週Double Fourier-Modal Approach for a 2D dielectric periodicstructure: Out-of-Plane Propagation
第 12 週Three-Dimensional photonic bandgap structures
第 13 週Scattering characteristics of photonic bandgap waveguides
第 14 週Dispersion relation of photonic bandgap waveguides
第 15 週Scattering characteristics of a photonic bandgap structure with defects
第 16 週Scattering of plane wave by 1D metasurfaces: Non-Principal Plane Propagation
第 17 週Synthetic dielectrics and metamaterials
第 18 週Final Exam
教科書

Ruey-Bing (Raybeam) Hwang, Periodic Structures: Mode-Matching Approach and Applications in Electromagnetic Engineering, Wiley-IEEE Press, 2012

Office Hours
地點
R722, Engineering Building 4
時間
Wednesday afternoon (14:00~16:00)
聯絡方式
raybeam@nycu.edu.tw