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Physics of Semiconductor Devices - 4th Edition by Simon M Sze & Yiming Li & Kwok K Ng (Hardcover)

Physics of Semiconductor Devices - 4th Edition by  Simon M Sze & Yiming Li & Kwok K Ng (Hardcover)
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<p/><br></br><p><b> About the Book </b></p></br></br>"Since the discovery of the transistor effect in 1947 by a research team at Bell Telephone Laboratories (now Nokia Bell Labs.), the semiconductor-device field has grown rapidly. Coincident with this growth, the semiconductor-device literature has expanded and diversified. For access to this massive amount of information, there is a need for a book giving a comprehensive introductory account of device physics and operational principles, with references. With the intention of meeting such a need, the First, Second and Third Editions of Physics of Semiconductor Devices were published in 1969, 1981 and 2007, respectively. It is perhaps somewhat surprising that the book has so long held its place as one of the main textbooks for advanced undergraduate and graduate students in applied physics, electrical and electronics engineering, and materials science. Because the book includes much useful information on material parameters and device physics, it is also a major reference for engineers and scientists in semiconductor-device research and development. To date, the book is one of the most, if not the most, cited works in contemporary engineering and applied science publications with over 55,000 citations (Google Scholar)"--<p/><br></br><p><b> Book Synopsis </b></p></br></br><p><b>The new edition of the most detailed and comprehensive single-volume reference on major semiconductor devices </b></p> <p>The Fourth Edition of <i>Physics of Semiconductor Devices</i> remains the standard reference work on the fundamental physics and operational characteristics of all major bipolar, unipolar, special microwave, and optoelectronic devices. This fully updated and expanded edition includes approximately 1,000 references to original research papers and review articles, more than 650 high-quality technical illustrations, and over two dozen tables of material parameters. </p> <p>Divided into five parts, the text first provides a summary of semiconductor properties, covering energy band, carrier concentration, and transport properties. The second part surveys the basic building blocks of semiconductor devices, including p-n junctions, metal-semiconductor contacts, and metal-insulator-semiconductor (MIS) capacitors. Part III examines bipolar transistors, MOSFETs (MOS field-effect transistors), and other field-effect transistors such as JFETs (junction field-effect-transistors) and MESFETs (metal-semiconductor field-effect transistors). Part IV focuses on negative-resistance and power devices. The book concludes with coverage of photonic devices and sensors, including light-emitting diodes (LEDs), solar cells, and various photodetectors and semiconductor sensors. This classic volume, the standard textbook and reference in the field of semiconductor devices: </p> <ul> <li>Provides the practical foundation necessary for understanding the devices currently in use and evaluating the performance and limitations of future devices </li> <li>Offers completely updated and revised information that reflects advances in device concepts, performance, and application </li> <li>Features discussions of topics of contemporary interest, such as applications of photonic devices that convert optical energy to electric energy </li> <li>Includes numerous problem sets, real-world examples, tables, figures, and illustrations; several useful appendices; and a detailed solutions manual for Instructor's only</li> <li>Explores new work on leading-edge technologies such as MODFETs, resonant-tunneling diodes, quantum-cascade lasers, single-electron transistors, real-space-transfer devices, and MOS-controlled thyristors </li> </ul> <p><i>Physics of Semiconductor Devices, Fourth Edition</i> is an indispensable resource for design engineers, research scientists, industrial and electronics engineering managers, and graduate students in the field. </p><p/><br></br><p><b> From the Back Cover </b></p></br></br><p><b>The new edition of the most detailed and comprehensive single-volume reference on major semiconductor devices</b> <p>The Fourth Edition of <i>Physics of Semiconductor Devices</i> remains the standard reference work on the fundamental physics and operational characteristics of all major bipolar, unipolar, special microwave, and optoelectronic devices. This fully updated and expanded edition includes approximately 1,000 references to original research papers and review articles, more than 650 high-quality technical illustrations, and over two dozen tables of material parameters. <p>Divided into five parts, the text first provides a summary of semiconductor properties, covering energy band, carrier concentration, and transport properties. The second part surveys the basic building blocks of semiconductor devices, including <i>p-n</i> junctions, metal-semiconductor contacts, and metal-insulator-semiconductor (MIS) capacitors. Part III examines bipolar transistors, MOSFETs (MOS field-effect transistors), and other field-effect transistors such as JFETs (junction field-effect-transistors) and MESFETs (metal-semiconductor field-effect transistors). The text then focuses on negative-resistance and power devices, and concludes with coverage of photonic devices and sensors, including light-emitting diodes (LEDs), solar cells, and various photodetectors and semiconductor sensors. The standard textbook and reference in the field of semiconductor devices, this classic volume: <ul> <li>Provides the practical foundation necessary for understanding the devices currently in use and evaluating the performance and limitations of future devices</li> <li>Offers completely updated and revised information that reflects advances in device concepts, performance, and applications</li> <li>Features new discussion of topics of increased contemporary interest such as the negative capacitance and tunneling field-effect transistors, 3-dimensional flash memories, GaN modulation-doped FETs, intermediate-band solar cells, and emitter turn-off thyristors</li> <li>Includes numerous problem sets, real-world examples, tables, figures, and illustrations, several useful appendices, and a detailed solutions manual</li> <li>Explores new work on leading-edge technologies such as MODFETs, resonant-tunneling diodes, quantum-cascade lasers, single-electron transistors, real-space-transfer devices, and MOS-controlled thyristors</li> </ul> <p><i>Physics of Semiconductor Devices, Fourth Edition</i> is an indispensable resource for device engineers, research scientists, industrial and electronics engineering managers, and graduate students in the field.<p/><br></br><p><b> About the Author </b></p></br></br><p><b>S. M. SZE, </b> <b>PHD, </b> is Honorary Chair Professor, College of Electrical and Computer Engineering, National Chiao Tung University, Taiwan. He has made fundamental and pioneering contributions to semiconductor devices, particularly his co-discovery of the floating-gate memory (FGM) effect that has ushered in the Fourth Industrial Revolution. Dr. Sze has authored, co-authored, and edited more than 400 papers and 16 books. He is a celebrated Member of IEEE, an Academician of Academia Simica, and a member of the US National Academy of Engineering. <p><b>YIMING LI, PHD, </b> is Full Professor of Electrical and Computer Engineering at National Chiao Tung University, Taiwan. He has been a Visiting Professor in Stanford University, Grenoble INP, and Tohoku University. He has published more than 300 technical articles in journals, conferences, and book chapters. Dr. Li is an active member of IEEE and has served on technical committees for many international professional conferences including IEDM. He is the recipient of the Pan Wen-Yuan Foundation's Research Fellowship Award and the Chinese Institute of Electrical Engineering's Outstanding Young Electrical Engineer Award. <p><b>KWOK K. NG, PHD, </b> is now serving on the Industry Advisory Board of the ECE Department of Wayne State University, USA, and as Adjunct Professor at National Chiao Tung University, Taiwan. He joined Bell Telephone Laboratories in 1980, and continued in its spin-offs Lucent Technologies and Agere Systems. He was with SRC (Semiconductor Research Corp.) from 2007 to 2019. Dr. Ng is an IEEE Life Fellow and former Editor of <i>IEEE Electron Device Letters</i>. He is author of numerous publications, including the book <i>Complete Guide to Semiconductor Devices.</i>

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