Semiconductor Physics

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课程主页: https://www.coursera.org/archive/semiconductor-physics

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课程简介

University of Colorado Boulder

课程大纲

In this module we will introduce the course and the Semiconductor Devices specialization. In addition, we will review the following topics: Type of solids, Bravais lattices, Lattice with basis, Point defects, Dislocation, Bulk crystal growth, Epitaxy, Energy levels of atoms and molecules, Energy bands of solids, Energy bands in real space, Energy bands in reciprocal lattice, Energy band structures of metal and insulator, Definition of semiconductor, Electrons and holes, and Effective mass.

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课程详情

This course can also be taken for academic credit as ECEA 5630, part of CU Boulder’s Master of Science in Electrical Engineering degree. This course introduces basic concepts of quantum theory of solids and presents the theory describing the carrier behaviors in semiconductors. The course balances fundamental physics with application to semiconductors and other electronic devices. At the end of this course learners will be able to: 1. Understand the energy band structures and their significance in electric properties of solids 2. Analyze the carrier statistics in semiconductors 3. Analyze the carrier dynamics and the resulting conduction properties of semiconductors

半导体物理:本课程也可作为ECEA 5630的学分,该课程是CU Boulder的电气工程理学硕士学位的一部分。 本课程介绍了固体量子理论的基本概念,并介绍了描述半导体中载流子行为的理论。该课程在基础物理与半导体和其他电子设备的应用之间取得平衡。 在本课程结束时,学习者将能够: 1.了解能带结构及其在固体电学性质中的意义 2.分析半导体中的载流子统计 3.分析载流子动力学和半导体的导电性能

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