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
選課資源

加入行事曆

選擇訂閱 Google Calendar,或下載通用的 ICS 檔案。

使用 Google Calendar 時,Google 會收到這份課表的公開連結。

半導體雷射二極體

Semiconductor Laser Diodes

學期
109-2
學分
0 學分
當期課號
5166
永久課號
IEO5656
開課單位
光電工程學系
授課教師
黃嘉彥
校區
光復
類別
選修
上課時間表
週二
2
09:00–09:50
半導體雷射二極體
EO105(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

從光纖通訊到醫療娛樂,雷射二極體於我們的生活中無所不在,然而許多雷射二極體的應用者,對於其工作原理理解也相當有限。本課程上半部將從基礎的量子與固態物理出發,探討半導體內光子與載子的交互作用機制與複合效率。並描述半導體在非平衡態的情形下,如何達到時態穩定的光學增益(optical gain)效果。下半部將探討二極體雷射的元件特性,解釋二極體雷射是如何透過設計達到各種需求的功能性,成為市場上常見的各種二極體雷射,諸如邊射型雷射,VCSEL,DBR,DFB雷射等。 This course aim to understand the physics and working principles of common semiconductor laser diodes. The first part will cover the fundamental of semiconductor physics in non-equilibrium state. We will explain the interaction between confined photon and carriers in the materials, and how the steady-state stimulated emission, a.k.a. lasing, can be achieved in a semiconductor cavity. The second part will introduce the working principle of typical semiconductor structure, such as, edge-emitting lasers, VCSEL, DBR and DFB lasers. This course will cover most of the textbook from chapter 1~chapter 4, and Appendix 1 to 7.

先修科目

建議背景: 電磁學,近代物理(Electromagnetism, Modern physics)

備註

無備註

教學方式

教學方式: 投影片+板書 (將放置於E3平台上) 評量方法 Homework 40%+ Midterm 30%+ Final 30%. 最終成績將獲透過實際分布情形進行加權與調整

評分方式

學期作業 6 times of homework 考試狀況 1 midterm + 1 final exam (Openbook)

課程大綱
  • Fundamentals in background physics

    1. Materials for diode lasers 2. Fundamental of quantum mechanics 3. Origin of band structures in semiconductors 4. Optical waveguide and optical modes

    講授:
    9
  • Carrier-photon interactions

    1. Einstein's A-B coefficient methodology 2. Fermi-Golden rule for radiative transition 3. Optical gain 4. Non-radiative transitions

    講授:
    12
  • Diode laser devices principles (Edge-emitting lasers as the example)

    1. Rate equations in diode lasers 2. L-I curves of diode lasers

    講授:
    6
  • Scattering and transmission in diode lasers

    1. Scattering and transmission matrix 2. Fabry-Perot etlon 3. Periodic dielectric mirrors

    講授:
    9
  • Other common diode lasers

    1. Vertical cavity surface-emitting lasers 2. DBR lasers 3. Grating and DFB lasers

    講授:
    6
週次計畫
週次主題
第 1 週

Introduction to laser and laser diodes

2/23
第 2 週

Review of solid-state physics (Homework #1)

3/2
第 3 週

Optical modes in semiconductor cavity

3/9
第 4 週

Radiative transition mechanisms (Homework #2 Homework #1 due)

3/16
第 5 週

Transition rate of stimulated emission

3/23
第 6 週

Optical gain and manybody effects (Homework #3+Homework #2 due)

3/30
第 7 週

National holiday

4/6
第 8 週

Non-radiative transitions (Homework #3 due)

4/13
第 9 週

Midterm (Open book)

4/20
第 10 週

Description of diode lasers

4/27
第 11 週

Characterization of diode lasers (Homework #4)

5/4
第 12 週

Scattering and Transmission theory-1

5/11
第 13 週

Scattering and Transmission theory-2 (Homework #5 + Homework #4 due)

5/18
第 14 週

Mathematical treatment of periodic structures

5/25
第 15 週

Grating and DBR lasers (Homework #6 + Homework #5 due)

6/1
第 16 週

VCSEL and DFB lasers (Homework #6 due at 6/13)

6/8
第 17 週

Final exam (Open book)

6/15
教科書

Diode lasers and Photonic Integrated Circuits 2nd Ed., L. A. Coldren, Scott W. Corzine, and Milan. Wiley’s, 2012 (ISBN:9780470484128)

Office Hours
地點
田家炳光電大樓417B
時間
Friday 3 pm~5 pm
聯絡方式
Email: cyhuang06@nycu.edu.tw