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Semiconductor Optics and Transport Phenomena
Wilfried Schäfer
Martin Wegener
出版
Springer Science & Business Media
, 2002-03-12
主題
Science / Physics / Electricity
Science / Physics / Electromagnetism
Science / Physics / Mathematical & Computational
Science / Physics / Optics & Light
Science / Physics / Quantum Theory
Science / Mechanics / Thermodynamics
Science / Physics / Condensed Matter
Technology & Engineering / General
Technology & Engineering / Electronics / General
Technology & Engineering / Electronics / Semiconductors
Technology & Engineering / Lasers & Photonics
Technology & Engineering / Materials Science / General
Technology & Engineering / Materials Science / Electronic Materials
Technology & Engineering / Optics
ISBN
3540616144
9783540616146
URL
http://books.google.com.hk/books?id=fU3MoNOt0rUC&hl=&source=gbs_api
EBook
SAMPLE
註釋
Whenever a physicist visits the physics faculty in Dortmund, he/she is bound to hear the success story of the so-called integrated course, a four-semester introduction to physics. These lectures are given by two professors simulta neously, one experimentalist and one theorist. After having asked the common question, "How many professors have killed each other?", the visitor usually realizes that this is an excellent way of presenting a coherent introductiorl to both experimental and theoretical physics. We decided to try this concept in an advanced course on semiconductor physics. At that point the typical student has already had an introductory course in solid-state physics and solid-state theory. The aim of the lectures was to repeat some of the most important, well-known classics of semiconductor optics and transport and eventually guide the students to topics of current interest in research. When preparing the lectures, we did not find a textbook addressing all these aspects: experiment and theory in semiconductor optics and transport- which made us write this book. This book presents the phenomenology and a simple, in tuitive understanding of many effects and, in addition, attempts to explain the underlying physics on a consistent theoretical footing. Calculations are presented such that a student should be able to follow them with a pencil and a piece of paper.