• Content outline: Fundamentals of semiconductor physics;

    内容概要半导体物理基础

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  • Since molecular beam epitaxy technique appeared, the research of semiconductor physics has gained many amazing break throughs.

    自从分子外延生长技术出现以来,半导体物理研究获得许多惊人的突破

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  • Semiconductor physics is recognized as one of the major areas of condensed matter physics and the core of modern micro-electronics device technology.

    半导体物理学凝聚态物理学一个重要分支,也是现代微电子器件工艺学的理论核心

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  • This course is the key fundamental course for engineering graduates majored IC engineering, and to teach the fundamentals of semiconductor physics and devices.

    课程集成电路工程领域工程硕士专业基础课程,旨在学生介绍半导体物理器件基础知识。

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  • The studying direction: low dimensional semiconductor physics and device physics, predictive properties of optoelectronics devices and the solid state quantum information.

    主要研究方向包括半导体物理器件光电子器件性能预测固态量子信息。

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  • Since pure radioactive ion beam can be implanted into material directly, research on solid physics especially on impurity and defect in semiconductor become possible.

    由于可以纯净放射性核注入样品中去,使得其固态物理特别是涉及半导体中的杂质缺陷问题的应用成为可能

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  • This class focuses on the physics of the interaction of photons with semiconductor materials.

    课程重于光子半导体材料交互影响物理学上。

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  • The optical property of semiconductor heterostructures have received extensive attention in condensed matter physics in recent years.

    半导体异质光学性质一直是凝聚态物理研究热点之一。

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  • This study is a step to develop a complete physics-of-failure-based reliability prediction methodology for semiconductor light-emitting devices.

    文中介绍了一种基于概率方法半导体发光器件可靠性预计模型

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  • This study is a step to develop a complete physics-of-failure-based reliability prediction methodology for semiconductor light-emitting devices.

    文中介绍了一种基于概率方法半导体发光器件可靠性预计模型

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