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Basic Semiconductor Physics: Graduate Texts in Physics

Autor Chihiro Hamaguchi
en Limba Engleză Hardback – 30 apr 2023
This textbook presents a detailed description of basic semiconductor physics, covering a wide range of important phenomena in semiconductors, from simple to advanced. It introduces and explains four different methods of energy band calculations in the full band region and covers fundamental topics such as the effective mass approximation and electron motion in a periodic potential, the Boltzmann transport equation, and deformation potentials used for the analysis of transport properties. The text also examines experimental and theoretical analyses of cyclotron resonance in detail and reviews essential optical and transport properties, while covering optical transitions, electron–phonon interaction, and electron mobility. It presents numerical calculations of scattering rate, relaxation time, and mobility for typical semiconductors with bulk, quantum well and HEMT structures including wideband gap materials such as GaN and SiC in addition to IV and III-V semiconductors.
The updated fourth edition includes coverage of new topics such as surface-modulated superlattices, Wannier–Stark effect, Bloch oscillation, wide band gap semiconductors, and photonic crystals. Featuring full-color diagrams calculated with updated physical parameters, as well as chapter-end problems and solutions, this tried and tested textbook on the basics of semiconductors physics is the cornerstone to any graduate or upper-level undergraduate course on the subject.
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Specificații

ISBN-13: 9783031255106
ISBN-10: 3031255100
Pagini: 785
Ilustrații: XV, 785 p. 344 illus., 343 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 1.45 kg
Ediția:4th ed. 2023
Editura: Springer International Publishing
Colecția Springer
Seria Graduate Texts in Physics

Locul publicării:Cham, Switzerland

Cuprins

Energy Band Structures of Semiconductors.- Cyclotron Resonance and Energy Band Structures.- Wannier Function and Effective Mass Approximation.- Optical Properties 1.- Optical Properties 2.- Electron–Phonon Interaction and Electron Transport.- Magnetotransport Phenomena.


Notă biografică

Chihiro Hamaguchi graduated from Electrical Engineering (BS) in 1961, M.S. Degree in 1963, and Graduate School of Engineering with Ph.D. Degree in 1966, all from Osaka University. He served as a research associate of Engineering Science in 1966 and an associate professor of Electronic Engineering in 1967, of Osaka University. He was a visiting research associate of Physics Department of Purdue University (USA), from 1967 to 1969. He was an appointed full professor of Electronic Engineering Department of Osaka University in 1985 and retired in 2001, awarded a professor emeritus. He was employed as an advisory board member of Sharp Corporation from 2001 till 2014 and also a visiting professor of Kochi University of Technology from 2001 till 2017. His major field of research is hot carrier transport, magnetotransport, modulation spectroscopy of quantum structures, and quantum transport in heterostructures, energy band calculations of superlattices, and nitrides, publishing more than 350 papers. He was elected as a fellow of the American Physical Society (1990), a fellow of the Institute of Electrical and Electronics Engineers (IEEE) (1992), a fellow of the Institute of Physics, UK (1999), and a fellow of the Japan Society of Applied Physics (2008). He received the Award of Gold Rays with Neck Ribbon” (Zuiho-Chuju Shou in Japanese) from Japanese Government and the Emperor in 2016. He published several textbooks in Japanese, such as Introduction to Electronics and Physics of Materials, Semiconductor Device Physics, and Electromagnetic Theory from basic to quantization.

He is a fellow of American Physical Society, Institute of Physics (UK), Institute of Electrical and Electronics Engineers (IEEE, USA), and Japan Society of Applied Physics. He received the Award of Gold Rays with Neck Ribbon (Zuiho-Chuju Shou in Japanese) in 2016.

Textul de pe ultima copertă

This textbook presents a detailed description of basic semiconductor physics, covering a wide range of important phenomena in semiconductors, from simple to advanced. It introduces and explains four different methods of energy band calculations in the full band region and covers fundamental topics such as the effective mass approximation and electron motion in a periodic potential, the Boltzmann transport equation, and deformation potentials used for the analysis of transport properties. The text also examines experimental and theoretical analyses of cyclotron resonance in detail and reviews essential optical and transport properties, while covering optical transitions, electron–phonon interaction, and electron mobility. It presents numerical calculations of scattering rate, relaxation time, and mobility for typical semiconductors with bulk, quantum well and HEMT structures including wideband gap materials such as GaN and SiC in addition to IV and III-V semiconductors.
The updated fourth edition includes coverage of new topics such as surface-modulated superlattices, Wannier–Stark effect, Bloch oscillation, wide band gap semiconductors, and photonic crystals. Featuring full-color diagrams calculated with updated physical parameters, as well as chapter-end problems and solutions, this tried and tested textbook on the basics of semiconductors physics is the cornerstone to any graduate or upper-level undergraduate course on the subject.

Caracteristici

Covers new topics such as surface-modulated superlattices, wide band gap semiconductors, and photonic crystals Is a comprehensive, successfully tested textbook on semiconductor physics Features full-color diagrams alongside chapter-end problems and solutions

Descriere

Descriere de la o altă ediție sau format:
When the ?rst edition ofBasic Semiconductor Physics was published in 2001, there were already many books, review papers and scienti?c journals de- ing with various aspects of semiconductor physics. Since many of them were dealing with special aspects of newly observed phenomena or with very f- damental physics, it was very di?cult to understand the advanced physics of semiconductors without the detailed knowledge of semiconductor physics. For this purpose the author published the ?rst edition for the readers who are involved with semiconductor research and development. Basic Semiconductor Physics deals with details of energy band structures, e?ective mass eq- tion and k·p perturbation, and then describes very important phenomena in semiconductors such as optical, transport, magnetoresistance, and quantum phenomena. Some of my friends wrote to me that the textbook is not only basic but advanced, and that the title of the book does not re?ect the c- tents. However, I am still convinced that the title is appropriate, because the advanced physics of semiconductor may be understood with the knowledge of the fundamental physics. In addition new and advanced phenomena - served in semiconductors at an early time are becoming well-known and thus classi?ed in basic physics. After the publication of the ?rst edition, many typographical errors have been pointed out and the corrected version was published in 2006. The p- lisher and my friends persuade me to revise the book adding new chapters, keeping the subject at the appropriate level.

Recenzii

"In conclusion, I would say that this book is a nice presentation of today's basic principles needed for a proper starting in the field of modern semiconductor physics."
--Physicalia