程式語言於半導體技術應用
Introduction to Programming for Semiconductor Devices
| 節 | 週四 |
|---|---|
2 09:00–09:50 | 程式語言於半導體技術應用 EE116 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
At the beginning of the course we will repeat/practice how to make input and output data, how to work with data, its visualisation and representation. We will train basic skills of math and solve some simple physical problems and try to apply the developed skills for semiconductor physics, electron transport problems in hetero-structures, problems of wave-pocket motion, etc. Basic tools are computer software such as Matlab and Wolfram Mathematica.
The course is focusing for improving the programming skills, application of simulations for learning physics of semiconductor devices, phenomena from solid state physics and related effects. Course helps to improve also scientific journal writing skills, related analysis, math and vector graphic application.
1. Open book middle term exam, 2. Exam pass is possible to do remotely. Homework = 30% Middle term exam =20% Classwork = 25% Final Exam = 25% Score-pass = 60 (from possible 100)
| 週次 | 主題 |
|---|---|
| 第 1 週 | Visualisation of simple analytical functions (e.g. Fermi-Dirac distribution). Input/output data and its visualisation. Frequently meet functions in physics. Requirements that needed in figures for publication. |
| 第 2 週 | PART I Visualisation of complicated analytical functions, examples of the complicated relations. Examples of the simulations in physics: e.g. oscillations of the pendulum, spintronic device, etc. Dynamic visualisation: parameter tuning of the model. Practice: barrier vs Fermi-level, etc. |
| 第 3 週 | PART II Visualisation of complicated analytical functions, examples of the complicated relations. Examples of simulations in physics: e.g. oscillations of the pendulum, spintronic device, etc. Dynamic visualisation: parameter tuning of the model. Practice: barrier vs Fermi-level, etc. |
| 第 4 週 | PART I Examples of the integration and solution of the system of differential equations. Geometrical interpretation and visualisation. Solution of the algebraic system of the equations with a help of programming. Block-schemes of the models and algorithms. Practice: integration/ differential eq within low and high level programming models. |
| 第 5 週 | PART II Examples of the integration and solution of the system of differential equations. Geometrical interpretation and visualisation. Solution of the algebraic system of the equations with a help of programming. Block-schemes of the models and algorithms. Practice: integration/ differential eq within low and high level programming models. |
| 第 6 週 | Introduction into electron transport theory: Boltzmann equations; Conductance; Fermi-Dirac distribution function. Mobility. |
| 第 7 週 | Basics of electron transport theory for low dimensional systems. Ballistic transport in nanocontacts. |
| 第 8 週 | Middle term Exam |
| 第 9 週 | Part I Application of the Schrödinger eq. for semiconductors, metal/metal and metal/semiconductor junctions. |
| 第 10 週 | Part II Application of the Schrödinger eq. for semiconductors, metal/metal and metal/semiconductor junctions. |
| 第 11 週 | Quantum Well (QW). Simulation of the QW. Energy spectrum of the QW . |
| 第 12 週 | Part I Basics for ferroelectric materials. Ferroelectric hysteresis. Modelling of the ferroelectric tunnel junction (application for FeRAM). Programming practice of the potential energy plot. Thomas-Fermi screening |
| 第 13 週 | Part II Basics for ferroelectric materials. Ferroelectric hysteresis. Modelling of the ferroelectric tunnel junction (application for FeRAM). Programming practice of the potential energy plot. Thomas-Fermi screening |
| 第 14 週 | Part I Introduction into spintronics. Magnetic domain wall. Magnetoresistance (MR), giant and tunnel MR. Magnetic point contact and spin current models. Magnetic tunnel junction (application for MRAM) |
| 第 15 週 | Part II Introduction into spintronics. Magnetic domain wall. Magnetoresistance (MR), giant and tunnel MR. Magnetic point contact and spin current models. Magnetic tunnel junction (application for MRAM) |
| 第 16 週 | Part I Simulation of the Wave-Packets |
| 第 17 週 | Part II Simulation of the Wave-Packets |
| 第 18 週 | Final Exam |
Wolfram Mathematica (https://search.wolfram.com/?query=manual) Manuals for Matlab (https://www.mathworks.com/help/matlab/, https://www.mathworks.com/moler/chapters.html) Attia, John Okyere. "Electronics and circuit analysis using MATLAB / John Okyere Attia " CRC Press, ISBN 0-8493-1176-4
- 地點
- MIRC 601
- 時間
- 2:00pm - 4:00pm
- 聯絡方式
- email: artu@nycu.edu.tw phone: 03-5712121 ext 55910