Introduction to Quantum Mechanics and Carrier Physics in Semiconductors
วันที่จะประกาศ
6ชั่วโมง/6สัปดาห์

บทคัดย่อ

● Enrollment Now OpenComing in the Second Half of 2027

This course introduces the fundamental principles of quantum mechanics and their application to semiconductor physics. Topics include the wave equation, quantum confinement, quantum tunneling and reflection, electron wave behavior, and effective mass. The course further covers the quantum free-electron theory of solids and the density of states in k-space and energy space, with a focus on 1D, 2D, and 3D semiconductor systems and quasi-Fermi levels under illumination. Equilibrium carrier statistics are then discussed, including the Fermi–Dirac distribution, carrier concentration, Fermi–Dirac integrals, energy band diagrams for intrinsic and doped semiconductors, and the dependence of carrier concentration on doping and temperature.

จุดมุ่งหมายรายวิชา

By the end of this course, students will be able to:

1
Understand and apply the fundamental principles of quantum mechanics relevant to semiconductor physics.
2
Analyze quantum phenomena in semiconductors, including quantum confinement, tunneling, reflection, and electron wave behavior.
3
Explain the quantum free-electron model of solids and derive the density of states in 1D, 2D, and 3D semiconductor systems.
4
Describe carrier statistics under equilibrium and non-equilibrium conditions, including quasi-Fermi levels under illumination.
5
Interpret energy band diagrams and evaluate carrier concentrations as functions of doping and temperature using Fermi–Dirac statistics.

ผู้สอน

Nguyet N. T. Pham
Research Interests
Two-dimensional (2D) semiconductors and van der Waals heterostructures
Quantum dots and nanoscale materials design
Catalytic systems and advanced battery materials
AI/ML-driven materials discovery and computational modeling

ตารางเรียน

บทที่ 1:Introduction to Quantum Mechanics

บทที่ 2:Quantum Confinement and Tunneling

บทที่ 3:Electron Waves, Effective Mass, and Free-Electron Theory

บทที่ 4:Density of States (DOS) To be filled in Semiconductors

บทที่ 5:Equilibrium Carrier Concentrations

บทที่ 6:Energy Band Diagrams and Device Implications

เนื้อหารายวิชา

Course Highlights
1
Integrates quantum mechanics with practical semiconductor physics, bridging abstract theory and device-relevant concepts.
2
Emphasizes dimensionality effects (1D, 2D, 3D) on density of states and carrier behavior.
3
Covers both equilibrium and illuminated conditions, preparing students for optoelectronic and electronic applications.
4
Develops strong analytical and conceptual foundations essential for advanced semiconductor device courses and research.

รูปแบบการเรียนการสอน

The course is organized into five major modules, each consisting of several short lessons.

Each lesson is presented as a video of approximately 10–30 minutes, allowing learners to study at their own pace.

เกณฑ์การให้คะแนน

After each chapter, an optional quiz is provided for learners to assess their understanding of the course content.

ผลการเรียนที่ผ่านเกณฑ์


คะแนนสอบผ่าน: 60 คะแนนคะแนนเต็ม: 100 คะแนน

รายวิชาหรือทักษะที่มีก่อนเรียน

This course is designed primarily for third-year undergraduate students or above majoring in Electrical Engineering, Electronics Engineering, or related disciplines.

Students are recommended to have a basic understanding of the following subjects before taking this course:

1
General Physics
2
Calculus
3
Basic Electronics