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Titlebook: Introduction to Semiconductor Physics and Devices; Mykhaylo Evstigneev Textbook 2022 The Editor(s) (if applicable) and The Author(s), unde

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书目名称Introduction to Semiconductor Physics and Devices
编辑Mykhaylo Evstigneev
视频video
概述Covers quantum and statistical physics in more depth than other semiconductor device physics textbooks.Suitable for a self-contained one-semester course, with original exercises to hone students’ unde
图书封面Titlebook: Introduction to Semiconductor Physics and Devices;  Mykhaylo Evstigneev Textbook 2022 The Editor(s) (if applicable) and The Author(s), unde
描述.This classroom-tested textbook provides a self-contained one-semester course in semiconductor physics and devices that is ideal preparation for students to enter burgeoning quantum industries. Unlike other textbooks on semiconductor device physics, it provides a brief but comprehensive introduction to quantum physics and statistical physics, with derivations and explanations of the key facts that are suitable for second-year undergraduates, rather than simply postulating the main results. The book is structured into three parts, each of which can be covered in around ten lectures. The first part covers fundamental background material such as quantum and statistical physics, and elements of crystallography and band theory of solids. Since this provides a vital foundation for the rest of the text, concepts are explained and derived in more detail than in comparable texts. For example, the concepts of measurement and collapse of the wave function, which are typically omitted, are presented in this text in language accessible to second-year students. The second part covers semiconductors in and out of equilibrium, and gives details which are not commonly presented, such as a derivatio
出版日期Textbook 2022
关键词Semiconductors textbook; Semiconductor devices textbook; Device physics textbook; Materials for devices
版次1
doihttps://doi.org/10.1007/978-3-031-08458-4
isbn_softcover978-3-031-08460-7
isbn_ebook978-3-031-08458-4
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
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Mykhaylo Evstigneevrof. Jian Sun).9. Ionic Liquids in Materials Science (Section Editors: Prof. Sheng Dai and Prof. Tao Wang).10. Ionic Liquids in Polymer Science (Section Editors: Asso. Prof. Jinming Zhang and Prof. Jun Zhang).11. Ionic Liquids in Environmental Science (Section Editors: Prof. Tiancheng Mu, Prof. Arun
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rof. Jian Sun).9. Ionic Liquids in Materials Science (Section Editors: Prof. Sheng Dai and Prof. Tao Wang).10. Ionic Liquids in Polymer Science (Section Editors: Asso. Prof. Jinming Zhang and Prof. Jun Zhang).11. Ionic Liquids in Environmental Science (Section Editors: Prof. Tiancheng Mu, Prof. Arun
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Mykhaylo Evstigneevrof. Jian Sun).9. Ionic Liquids in Materials Science (Section Editors: Prof. Sheng Dai and Prof. Tao Wang).10. Ionic Liquids in Polymer Science (Section Editors: Asso. Prof. Jinming Zhang and Prof. Jun Zhang).11. Ionic Liquids in Environmental Science (Section Editors: Prof. Tiancheng Mu, Prof. Arun
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Carrier Transport-called Hall voltage across a semiconductor sample in the direction perpendicular to the current flow. The Hall voltage measurements allow one to determine the sign and the concentration of the majority carriers. Continuity equation is derived, which describes the charge flow due to both drift and d
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