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

基本的量子集成電路

Basics of Quantum Integrated Circuits

學期
106-2
學分
3 學分
當期課號
5943
永久課號
CST5030
開課單位
國際半導體產業學院碩士班
授課教師
阿圖爾Artur、Useinov
校區
光復
類別
選修
上課時間表
週五
2
09:00–09:50
基本的量子集成電路
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

概述

Coherent manipulation, filtering, and measurement of electronic spin in quantum dots and other nanostructures are new technologies which have promising applications in quantum information processing, information transmission and storage. The course reviews the spintronics electron devices and their principal working mechanisms. For example, superconducting Josephson junctions can be considered as a basic unit for quantum computation creating the Qubit; quantum heterostructures are important for fabrication of the short-wavelength light-emitting diodes and diode lasers.; magnetic tunnel junctions are important as magnetic field sensors or memory cells e.g. magnetic random access memory (MRAM, STT-MRAM), etc.

先修科目

Intermediate English.

教學方式

Lectures and Seminars

評分方式

1. Assignments for Homework: 25 % 2. Exams and Quizzes: 50 % 3. Presentations of article hot-topic review: 20% 5. Regular class participation : 5%

課程大綱
  • Basics for Quantum Integrated ?ircuits. Introduction into Quantum Mechanics (QM).
  • Low dimensional systems. Resume of Semicoductor Physics. Important length scale.
  • Electron transport via energy potential. Common case.
  • Spintronic devices. Non-volatile memory. MRAM.
  • Tunneling phenomena. Superconducting Josephson Junction.
  • Coulomb blockade effect. Consecutive tunneling. Physics of quantum dots.
  • Point-like contact model. Point-like spectroscopy.
週次計畫
週次主題
第 1 週Introduction into quantum mechanics
第 2 週Energy spectra of the electrons in the low dimensional systems (LDS). Electron transport via energy potential barriers (I).
第 3 週Electron transport via energy potential barriers (II).
第 4 週Quizzes, (Homework presentations) Program simulations and visualizations of the problems.
第 5 週Distribution of the quantum states in LDS. Electrical field influence.
第 6 週Screening Effects of the E-field in LDS.
第 7 週Transport phenomena. Problems of single electron electronics.
第 8 週Quantum Hall effect within 2D electron Gas. Energy spectra of the electrons in uniform magnetic field.
第 9 週MidTerm Exam.
第 10 週Theories of the Band Alignment
第 11 週Quasi-Equilibrium Properties of Heterostructures
第 12 週Quizzes or Homework presentations
第 13 週Tunneling phenomena for electronic devices. Spin electronics. MRAM.
第 14 週Point-like contact spectroscopy (I)
第 15 週Point-like contact spectroscopy (II)
第 16 週Magnetic semiconductors and related heterostructures (I, II)
第 18 週Final Exam.
教科書

1) E. Kasper, D.J. Paul. Silicon Quantum Integrated Circuits. Silicon-Germanium Heterostructure Devices: Basics and Realisations. (Springer Berlin Heidelberg New York., 2005) 2) D.D. Awschalom, D. Loss, N. Samarth. Semiconductor Spintronics and Quantum Computation. (Springer –Verlag Berlin Heidelberg New York, 2002) 3) E. Tsymbal et.al. Handbook-of-Spin-Transport-and-Magnetism. (Taylor & Francis Group. LLC, 2012)

Office Hours
地點
Room 301, MIRC building
時間
Monday, Wednesday 14.00 - 17.00
聯絡方式
Prof. Arthur Useinov, Tel: 0974057270