8/24 – 9/18

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  • 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 9/7 – 9/21
  • 逾期加退選 9/21 – 9/24
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奈米科技導論 B

Introduction to Nanotechnology B

學期
108-1
學分
0 學分
當期課號
4026
永久課號
ISC5225
開課單位
永續化學科技國際研究生博士學位學程
授課教師
Sinica、SCST、Academia
類別
選修
上課時間表
週一
5
13:20–14:10
奈米科技導論 B
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

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先修科目

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備註

無備註

教學方式

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評分方式

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課程大綱

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週次計畫
週次主題
第 1 週Chap. 2 Structure p. 9~29 (20)- 2.1 Introduction 2.2 Basic properties 2.3 Examples of crystal structures 2.4 Miller indices 2.5 Surface-to volume ratio
第 2 週Chap. 2 Structure p. 9~29 (20)- 2.1 Introduction 2.2 Basic properties 2.3 Examples of crystal structures 2.4 Miller indices 2.5 Surface-to volume ratio
第 3 週Chap. 3 Length Scales p. 29~61 (32)- 3.1 Introduction 3.2 de Broglie wavelength 3.3 The Bohr radius 3.4 Excitons 3.5 Confinement regimes 3.6 Metals 3.7 The Fermi energy, Fermi velocity, and Kubo gap 3.8 The mean free path in metals 3.9Charging energy
第 4 週Review of Linear Algebra
第 5 週Chap. 6 A Quantum Mechanics Review p. 101~137 (36)- 6.1 Introduction 6.2Wavefunctions 6.3 Observables and the correspondence principle 6.4 Eigenvalues and eigenfunctions
第 6 週Chap. 6 A Quantum Mechanics Review p. 101~137 (36)- 6.1 Introduction 6.2Wavefunctions 6.3 Observables and the correspondence principle 6.4 Eigenvalues and eigenfunctions
第 7 週6.5 Wave packets 6.6 Expectation values 6.7 Dirac bra-ket notation 6.8 Operator math 6.9 More on operators
第 8 週6.10 Commutators 6.11 More commutator relationships 6.12 The uncertainty principle 6.13 The Schrodinger equation
第 9 週6.14 The postulates of quantum mechanics 6.15 Time-independent, nondegenerate perturbation theory
第 10 週Chap. 7 Model Quantum Mechanics Problem p.137~179 (42)- 7.1 Introduction 7.2Standard model problems 7.3 Model problems for wells, wires, and dots
第 11 週Chap. 8 Additional Model Problems p.179~203 (24)- 8.1 Introduction 8.2 Particle in a finite one-dimensional box 8.3 Particle in an infinite circular box 8.4 Harmonic oscillator (This chapter can be omitted if there is not enough time. It is more important that the students do some calculation.)
第 12 週Chap. 11 Time-Dependent Perturbation Theory p.275~294(19)- 11.1 Introduction 11 .2 Time-dependent perturbation theory 11.3 Example: A two-level system 11.4Rates (This Chap. can be mentioned before Ch.9 without derivation, just making use of the formulas and practice doing the calculations. ) Chap. 9 Density of states p.203~239 (36) 9.1 Introduction 9.2 Density of states for bulk materials, wells, wires, and dots 9.3 Population of the conduction and valence bands 9.4 Quasi-Fermi levels 9.5 Joint density of states
第 13 週Chap. 10 Bands p. 239~275 (36) (This chapter involves many concepts and need some supplemental material.)- 10.1 Introduction 10.2 The Kronig-Penney model 10.3Kronig-Penney model with delta-function barriers
第 14 週10.4 Other band models 10.5 Metals, semiconductors, and insulators
第 15 週Surface state, localized impurity state, band bending, pn junction
第 16 週Chap. 11 revisited
第 17 週Chap. 12 lnterband Transitions p.295~344 (49)- 12.1 Introduction 12.2 Preliminaries: -u· E versus -(q/m0)A · p 12.3 Back to transition probabilities 12.4 Bulk semiconductor 12.5 Equivalence of H(1) =-(q/m0)A · P and H(1) =-u·E 12.6 Multiple states 12.7 Fermi's golden rule and the associated transition rate 12.8 Absorption coefficient α 12.9 Transitions in low-dimensional semiconductors
第 18 週Chap. 12 lnterband Transitions p.295~344 (49)- 12.1 Introduction 12.2 Preliminaries: -u· E versus -(q/m0)A · p 12.3 Back to transition probabilities 12.4 Bulk semiconductor 12.5 Equivalence of H(1) =-(q/m0)A · P and H(1) =-u·E 12.6 Multiple states 12.7 Fermi's golden rule and the associated transition rate 12.8 Absorption coefficient α 12.9 Transitions in low-dimensional semiconductors
教科書

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Office Hours
地點
R209, IAMS, AS
時間
Monday 13:30-16:30
聯絡方式
By email